Fundamentals of Biochemistry - Filippovich, Y. B. 1999
Recommended Reading
GENERAL GUIDES
Alberts, B., Bray, D., Lewis, J., Raff, M., Roberts, K., & Watson, J. Molecular Biology of The Cell. Moscow: Mir, 1994. Vols. 1–3.
Biopolymers / Ed. by Y. Imanishi.— Moscow: Mir, 1988. 544 p.
Bohinski, R. Modern Concepts in Biochemistry.— Moscow: Mir, 1987. 543 p.
Gilbert, S. Developmental Biology.— Moscow: Mir, 1991. Vols. 1–3.
Dawson, R., Elliot, D., Elliot, W., & Jones, K. Biochemical Research Data.— Moscow: Mir, 1991. 543 p. Lehninger, A. Biochemistry.— Moscow: Mir, 1985. Vols. 1–3.
Murray, R., Granner, D., Mayes, P., & Rodwell, V. Harper's Biochemistry.— Moscow: Mir, 1993. Vols. 1 and 2. Molecular Biology of the Cell / Transl. from English. Ed. by G. P. Georgiev.— Moscow: Mir, 1986. Vols. 1–2.
Ovchinnikov, Y. A. Bioorganic Chemistry.— Moscow: Prosveshcheniye, 1987. 816 p.
Prospects in Biochemical Research / Ed. by J. Tooze and S. Prentice.— Moscow: Mir, 1987. 188 p.
Rees, E., & Sternberg, M. From Cells to Atoms.— Moscow: Mir, 1988. 142 p.
Stryer, L. Biochemistry.— Moscow: Mir, 1984. Vols. 1–3.
Campbell, P. N., & Smith, A. D. Biochemistry Illustrated. 2nd ed.— Churchill Livingstone Inc. Edinburgh, London, Melbourne, New York, 1988. 288 p.
Zubay, G. Biochemistry. Addison-Wesley Publishing Company, 1983. 1268 p.
Mathews, Ch. K., & Van Holde, K. E. Biochemistry. The Benjamin / Cummings Publishing Company, Inc., 1990. 1129 p.
Biotechnology / Ed. by I. Higgins, D. Best, & J. Jones.— Moscow: Mir, 1988. 479 p.
Blanco, M. A. Tracer Atoms in Biochemistry.— Moscow: Nauka, 1988. 117 p.
Braunstein, A. E. At the Crossroads of Chemistry and Biology / Ed. by A. A. Baev.— Moscow: Nauka, 1987. 239 p.
Memories of V. A. Engelhardt / Ed. by A. A. Baev.— Moscow: Nauka, 1989. 336 p.
Ginter, V. K. Medical Genetics: Achievements and Prospects // Biology at School, 1993. No. 5. P. 8–12.
Elinov, N. P. Chemical Microbiology.— Moscow: Visshaya Shkola, 1989. 448 p.
Kotrev, V. G. Biochemistry, Molecular Biology, and Crop Production Problems // Agricultural Biology, 1987. No. 11. P. 18–24.
MOLECULAR AND CELLULAR Aspects of Biotechnology / Ed. by S. G. Inge-Vechtomov.— Leningrad: Nauka, Leningrad Branch, 1986. 256 p.
Prospects of Bioorganic Chemistry and Molecular Biology / Ed. by Y. A. Ovchinnikov.— Moscow: Nauka, 1986. 365 p.
Sasson, A. Biotechnology: Achievements and Prospects.— Moscow: Mir, 1987. 411 p.
Shamin, A. N. History of Biological Chemistry: The formation of Biochemistry. Moscow: Nauka, 1991.
Chapter I. Chemical composition of ORGANISMS
Biogeochemical Cycling of Substances in the Biosphere, edited by V. A. Kovda. Moscow: Nauka, 1987. 142 p.
Vadkovskaya, I. K., and K. I. Lukashov. Chemical Elements and Life in the Biosphere. Minsk: Vysheyshaya Shkola, 1981. 175 p.
Vernadsky, V. I. The Biosphere and the Ionosphere. Moscow: Nauka, 1989. 262 p.
Dyakov, V. M. Silicon in Life and Science. Moscow: Znanie, 1989. 32 p.
Mineev, V. G. Agrochemistry and the Biosphere. Moscow: Kolos, 1984. 248 p.
Moiseev, N. "How to Approach the Noosphere." Chemistry and Life, no. 6 (1989): 5–9; no. 7: 28–33; no. 8: 10–16.
Nozdryukhina, L. R. Biological Role of Trace Elements in the Animal and Human Organism. Moscow: Nauka, 1977. 184 p.
Osaidze, D. F. Significance of Mycoplasmas in Virology and Their Role in Animal Pathology. Moscow: VNIITEISKH, 1970. 75 p.
Pirie, N. "Chemical Diversity and Structure/149.html">The problem of THE ORIGIN OF Life." In The Origin of Life on Earth, 79–87. Moscow: USSR Academy of Sciences Publishing House, 1956.
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Chernov, V. M., and O. A. Chernova. "Sequences Homologous to Eukaryotic Topoisomerase I Recognition Sites in Mycoplasma Genomes." Molecular Biology 30, no. 2 (1996): 286–292.
Chapter II. Proteins
Abelev, G. N. "Fundamentals of Immunity." Soros Educational Journal, no. 5 (1996): 4–10.
Borkovsky, E. V., and V. A. Bandarin. "Prediction of Structural Regions of Globular proteins from Their Primary Structure." Bioorganic Chemistry 5, no. 1 (1979): 24–34.
Borisov, V. V. "Every Protein Has Its Own Plot." Chemistry and Life, no. 2 (1990): 41–51.
Vasiliev, Yu. M. "The Cell as an Architectural Wonder. Part I. Living Filaments. Part 2. The Cytoskeleton Capable of Feeling and Remembering." Soros Educational Journal, no. 2 (1996): 36–43; no. 4: 4–10.
Dolgikh, D. A., M. P. Kirpichnikov, O. B. Ptitsyn, and V. V. Chemeris. "Protein Engineering of Artificial Proteins." Molecular Biology 30, no. 2 (1996): 261–271.
Ivanyushina, V. A., A. B. Mornin, and O. Kiselev. "Molecular Chaperones: New Proteins — New
Functions." Molecular Biology 25, no. 4 (1991): 869–880.
Kurochkina, L. P., and V. V. Mesyanzhinov. "Protein Folding in the Cell." Advances in Biological Chemistry XXXVI (1996): 49–86.
Lopatin, S. A., and V. P. Varlamov. "New Trends in Metal-Chelate Affinity Chromatography of Proteins." Bioorganic Chemistry 31, no. 3 (1995): 259–266.
Mekler, L. B., and R. G. Idlis. "The General Stereochemical Genetic Code: A Path to Biotechnology and Universal Medicine of the 21st Century Today." Priroda, no. 5 (1993): 29–69.
Nagradova, N. K. "Intracellular Regulation of the Formation of the Native Spatial Structure of Proteins." Soros Educational Journal, no. 7 (1996): 11–18.
Poglazov, B. F., & Burnashova, S. A. (1989). Non-Muscle motor systems. In Biological Chemistry (Results of Science and Technology, VINITI USSR Academy of Sciences) (Vol. 29, p. 176).
Darbre, A. (Ed.). (1986). Practical Protein Chemistry. Chichester: John Wiley & Sons. (Russ. ed.: Moscow: Mir, 1989. 621 p.)
Scopes, R. K. (1987). Protein Purification: Principles and practice. New York: Springer-Verlag. (Russ. ed.: Moscow: Mir, 1985. 358 p.)
Stepanov, V. M. (1996). Molecular biology: Protein Structure and function. Moscow: Vysshaya Shkola. 335 p.
Chipens, G. I. (1991). Mutations in homologous protein structures confirm the existence of an amino acid interaction code. Bioorganic Chemistry, 17(9), 1284—1287.
Schulz, G. E., & Schirmer, R. H. (1979). Principles of Protein Structure. New York: Springer-Verlag. (Russ. ed.: Moscow: Mir, 1982. 354 p.)
Jakubke, H.-D., & Jeschkeit, H. (1982). Aminosäuren, Peptide, Proteine. Berlin: Verlag Chemie. (Russ. ed.: Moscow: Mir, 1985. 455 p.)
Koenig, M., Monaco, A. P., & Kunkel, L. M. (1988). The complete sequence of dystrophin predicts a rod-shaped cytoskeletal protein. Cell, 53(2), 219—228.
Sanger, F. (1988). Sequences, sequences and sequences. Annual Review of Biochemistry, 57(1), 1—28.
Chapter III. Enzymes
Andreeva, Y. S. (1994). Why and how is Pepsin stable and active at pH 2? Molecular Biology, 28(4), 1400—1404.
Beckman, E. M., & Grigoriev, M. Y. (1988). Ribozymes: RNA-RNA interactions and endonucleolytic Cleavage. Advances in Biological Chemistry, 29, 113—121.
Berezin, I. V. (1990). Research in the field of Enzymatic Catalysis and enzyme engineering. Moscow: Nauka. 382 p.
Berezov, T. T. (1996). Application of Enzymes in medicine. Soros Educational Journal, (3), 23—27.
Boldyrev, A. A. (1997). Regulation of membrane enzyme activity. Soros Educational Journal, (6), 21—27.
Valueva, T. A., & Mosolov, V. V. (1995). Plant proteins as inhibitors of Proteolytic Enzymes. Applied Biochemistry and Microbiology, 31(6), 579—589.
Dixon, M., & Webb, E. C. (1979). Enzymes (3rd ed.). London: Longman. (Russ. ed.: Moscow: Mir, 1982. Vols. 1–3).
Woodward, J. (Ed.). (1985). Immobilized cells and enzymes: A practical approach. Oxford: IRL Press. (Russ. ed.: Moscow: Mir, 1988. 215 p.)
Kvesitadze, G. I. (1990). Enzymes of microorganisms living in extreme environments. Moscow: Nauka. 52 p.
Nagradova, N. K. (1990). Protein-Protein Interactions in the functioning of NAD-dependent dehydrogenases (44th Bakh Lecture). Moscow: Nauka. 55 p.
Priest, F. (1984). Extracellular enzymes. Wokingham: Van Nostrand Reinhold. (Russ. ed.: Moscow: Mir, 1987. 117 p.)
Rennenberg, R. (1987). Elixirs of life. Moscow: Mir. 151 p.
Sorochinsky, V. V., & Kurganov, B. I. (1988). Enzyme electrodes. In Biotechnology (Results of Science and Technology, VINITI USSR Academy of Sciences) (Vol. 13, p. 207).
Filippovich, Y. B., & Konichev, A. S. (1987). Multiple Forms of insect enzymes and problems of agricultural entomology. Moscow: Nauka. 166 p.
Friedrich, P. (1984). Supramolecular enzyme Organization: Quaternary Structure and beyond. Budapest: Akadémiai Kiadó. (Russ. ed.: Moscow: Mir, 1986. 374 p.)
Cech, T. Who would have thought that RNA could act as an enzyme // Khimiya i zhizn, 1988. No. 12. P. 31—33.
Chernov, N. N. Enzymes in the cell and in the test tube // Soros Educational Journal, 1996. No. 5. P. 28—34.
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Srere, P. A. Complexes of sequential metabolic enzymes // Annual Review of Biochemistry, 1987. Vol. 56. P. 89—124.
Chapter IV. Coenzymes. Vitamins, AND CERTAIN Other bioactive compounds
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Bukin, Yu. V., Plihtyah, I. L., Draudin-Krylenko, V. A. et al. Ascorbigen and its derivatives as depot forms of ascorbic acid // Bioorganic Chemistry. 1987. Vol. 13. No. 4. P. 539—545.
Vitamins / Ed. by M. I. Smirnov.—M.: Meditsina, 1974. 496 p.
Vitamin U (S-methylmethionine). Nature, properties, Applications // Collection of papers edited by V. N. Bukin and V. E. Anisimov.—M.: Nauka, 1973. 152 p.
Dmitrovsky, A. A. METABOLISM of ß-carotene and vitamin A and biochemical aspects and applications // Abstract of D. Sc. (Biology) Dissertation, Moscow, 1993. 68 p.
Dusheiko, A. A. Vitamin A. Metabolism and Functions: Kyiv: Naukova Dumka, 1989. 288 p.
Karnaukhov, V. N. BIOLOGICAL FUNCTIONS OF Carotenoids.—M.: Nauka, 1988. 239 p.
Kirshenblat, Ya. B. Telergones: Chemical Means of Animal Interaction.—M.: Nauka, 1978. 142 p.
Natans, D. The genes for Color Vision // Scientific American, 1989. No. 4. P. 16—25.
Poznanskaya, A. A., Korsova, T. L. Adenosylcobalamin-dependent enzymes // Advances in Biological Chemistry, 1988. Vol. XXVIII. P. 66—101.
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Proceedings of the International Conference on Retinal Proteins / Ed. by Yu. A. Ovchinnikov.—M.: Nauka, 1989. 325 p.
Filippov, V. V. Functions and Synthesis of Biotin in Living Organisms.—M.: Nauka, 1985. 216 p.
Yurkevich, A. M., Rudakova, I. P. Structure, properties, and MECHANISM OF ACTION of cobalamin coenzymes // Bioorganic Chemistry (VINITI Results of Science and Technology, USSR Academy of Sciences), 1985. Vol. 5. 196 p.
Chapter V. General concept of Metabolism and Energy IN THE ORGANISM
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Shaitan, K. V. Conformational dynamics and novel approaches to the physical mechanisms of elementary acts of mass transfer, energy transformation, and Information transmission in biomromolecular structures. Molecular Biology, 1994, vol. 28, iss. 3, pp. 670–676.
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Chapter VI. Nucleic Acids and Their Metabolism
Agol, V. I., and Bogdanov, A. A. Structure and Biosynthesis of Nucleic Acids. Moscow: Vysshaya Shkola, 1989.
Bavykin, S. G. Chromatin Structure dynamics. In: Molecular Biology (VINITI Academy of Sciences of the USSR Series: Itogi Nauki i Tekhniki). Moscow, 1988, vol. 26, pp. 3–121.
Bayev, A. A. The Human Genome: An Overview. Moscow: VINITI, 1989. 45 p.
Bogdanov, A. A., Lavrik, I. N., Dokudovskaya, I. S., and Dontsova, O. A. Structure and function of 5S rRNA in the ribosome. Molecular Biology, 1995, vol. 29, iss. 6, pp. 1218–1227.
Gvozdev, V. A. Mechanisms regulating gene activity during Transcription. Soros Educational Journal, 1996, no. 1, pp. 23–31.
Georgiev, G. P. Genes of Higher Organisms and Their Expression. Moscow: Nauka, 1989. 254 p.
Glazkov, M. V. Loop-domain organization of genes in eukaryotic Chromosomes. Molecular Biology, 1995, vol. 29, iss. 5, pp. 965–992.
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Ivanov, V. A., and Ilyin, Y. V. Reverse transcriptases and their biological role. Molecular Biology, 1995, vol. 29, iss. 2, pp. 258–280.
Ivanov, V. I., and Minchenkova, L. E. A-form DNA: In search of a biological role. Molecular Biology, 1994, vol. 28, iss. 6, pp. 1258–1271.
Proceeding of the Conference «Human Genome-94» (Chernogolovka, March 9–11, 1994). Genetics, 1995, vol. 31, no. 5, pp. 733–736.
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Kopylov, A. M. Another step toward the RNA world. Biochemistry, 1995, vol. 60, iss. 1, pp. 159–161.
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Leshchinskaya, I. B. Genetic Engineering. Soros Educational Journal, 1996, no. 1, pp. 32–39.
Lewin, B. Genes. Moscow: Mir, 1987. 544 p.
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Molecular Biology: Structure and Biosynthesis of Nucleic Acids, ed. by A. S. Spirin. Moscow: Vysshaya Shkola, 1990. 352 p.
Nikiforov, V. G. Bacterial RNA polymerase: Comparative studies. Advances in Microbiology, 1987, vol. 21, pp. 105–150.
Ptashne, M. A Genetic Switch: Gene Control and Phage λ. Moscow: Mir, 1988. 158 p.
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Turpaev, K. T., and Vasetsky, E. S. Nuclear protein factors interacting with specific DNA sequences. Genetics, 1990, vol. 26, no. 5, pp. 804–816.
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Florentiev, V. A. Conformational capabilities of DNA. Bioorganic Chemistry, 1982, vol. 8, no. 7, pp. 885–899.
Frank-Kamenetskii, M. D. The Most Important Molecule: (On the DNA Molecule). Moscow: Nauka, 1988. 176 p.
Shchelkunov, S. N. Smallpox virus (VARV) as a source of novel medical products. Soros Educational Journal, 1995, no. 1, pp. 28–31.
Hames, B., and Higgins, S., eds. Transcription and Translation. Moscow: Mir, 1987. 259 p.
Adams, R., Knowler, J., and Leader, D. The Biochemistry of Nucleic Acids. 10th ed. London, New York: Chapman and Hall, 1986. 526 p.
Fraser, C. M., et al. (38 authors). Genomic sequence of a Lyme disease spirochaete, Borrelia burgdorferi B31. Nature, 1997, vol. 390, no. 6660, pp. 580–586.
Kunst, F., et al. (150 authors). The complete genome sequence of the Gram-positive bacterium Bacillus subtilis. Nature, 1997, vol. 390, no. 6657, pp. 249–256.
West, S. C. DNA helicases get physical. Nature, 1996, vol. 384, no. 6607, pp. 316–317.
Chapter VII. Protein metabolism
Brodsky, V. Ya., and Nechaeva, N. V. The Rhythm of Protein Synthesis. Moscow: Nauka, 1988. 239 p.
Vysotskaya, V. S., and Garber, M. B. Regulation of ribosomal protein Gene Expression IN Escherichia coli. Advances in Biological Chemistry, 1995, vol. XXXV, pp. 67–95.
Zaitseva, G. N., and Entelis, N. S. Structural Features of Transfer RNAs and the mitochondrial genetic code. Advances in Biological Chemistry, 1989, vol. XXX, pp. 106–129.
Inge-Vechtomov, S. G. Cytogenes and Prions: CYTOPLASMIC INHERITANCE without DNA? Soros Educational Journal, 1996, no. 5, pp. 11–18.
Kiselev, L. L., and Wolfson, A. D. Aminoacyl-tRNA synthetases of higher eukaryotes. Advances in Biological Chemistry, 1995, vol. XXXV, pp. 3–65.
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Lavrik, O. N. (1996). Mechanisms of specific amino acid Selection in Protein Biosynthesis. Soros Educational Journal, (4), 18–23.
Lim, V. I., & Spirin, A. S. (1988). Stereochemical analysis of transpeptidation, translocation, and folding of the growing peptide on the ribosome. Advances in Biological Chemistry, 28, 3–19.
Minchenko, A. G. (1989). Enigmas of mitochondrial protein synthesis. Biochemistry, 54(12), 2071–2075.
Mosolov, V. V. (1988). Mechanisms of proteolysis control. Advances in Biological Chemistry, 28, 125–144.
Mosolov, V. V., & Valueva, T. A. (1993). Plant protein inhibitors of proteolytic enzymes. Moscow: A. N. Bach Institute of Biochemistry, RAS. 207 p.
Ryazanov, A. G., & Spirin, A. S. (1988). Compartmentalization of biochemical processes on polyribosomes and other subcellular structures. Advances in Biological Chemistry, 29, 3–43.
Spirin, A. S. (1986). Molecular biology: Ribosome structure and protein biosynthesis. Moscow: Vysshaya Shkola. 303 p.
Spirin, A. S. (1996). Regulation of translation by mRNA-binding factors in higher eukaryotes. Advances in Biological Chemistry, 36, 3–48.
Spirin, A. S. (1986). Ribosomal translocation: Facts and models. Advances in Biological Chemistry, 27, 3–29.
Spirin, A. S. (1989). Energetics and dynamics of the protein-synthesizing apparatus. Advances in Biological Chemistry, 30, 3–24.
Spirin, A. S., Chetverin, A. B., Voronin, L. A., et al. (1991). Protein Biosynthesis and prospects of cell-free biotechnology. Priroda, (5), 10–19.
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Chapter VIII. CARBOHYDRATES and Their Metabolism
Bovin, N. V. (1996). Carbohydrate-carbohydrate interaction. Biochemistry, 61(6), 968–983. Gorbach, Z. V. (1988). Pentose Phosphate Pathway of carbohydrate transformation: Structure, functions, regulation. Advances in Modern Biology, 105(1), 35–46.
Deisenhofer, J., & Michel, H. (1990). The photosynthetic reaction centre from the purple bacterium.— Moscow: Znanie, (2), 3–24.
Yermolayev, L. P. (1987). Regulation of Gluconeogenesis in ontogeny.— Moscow: Nauka. 168 p.
Ignatov, V. V. (1997). Carbohydrate-recognizing proteins: Lectins. Soros Educational Journal, (2), 14–20.
Klesov, A. A. (1990). Biochemistry and enzymology of Cellulose Hydrolysis. Biochemistry, 55(10), 1731–1765.
Kudaeva, O. N. (1997). The chloroplast and its semiautonomy within the cell. Soros Educational Journal, (7), 2–9.
Kurganov, B. I., & Lyubarev, A. E. (1988). Hypothetical STRUCTURE OF THE glycolytic enzyme complex. Molecular Biology, 22(6), 1605–1613.
Lakhtin, V. M. (1994). Molecular organization of lectins. Molecular Biology, 28(2), 245–273.
Livanova, N. B. (1988). Structural features and regulatory properties of phosphorylase kinase isozymes. Advances in Biological Chemistry, 28, 44–65.
Lynch, H. E., Slot, J. W., James, D. E., & Mueckler, M. (1992). How cells take up glucose. In the World of Science (Russian edition of Scientific American), (3), 22–28.
Lyubarev, A. E., & Kurganov, B. I. (1987). Hypothetical structure of The Tricarboxylic Acid Cycle enzyme complex. Molecular Biology, 21(5), 1286—1296.
Sebyakin, Y. L., & Evstigneeva, R. P. (1985). Polyisoprenolphosphosugars in The biosynthesis of carbohydrate-containing biopolymers. Izvestiya Akademii Nauk SSSR. Seriya Biologicheskaya, (2), 485—498.
Skulachev, V. P. (1989). Biological energy converter: A blueprint accurate to the atom. Chemistry and Life, (3), 35—39.
Stepanenko, B. N. (1978). Chemistry and Biochemistry of Carbohydrates (Polysaccharides). Moscow: Vysshaya Shkola. 256 p.
Stepanenko, B. N. (1979). Modern Problems of Carbohydrate Biochemistry. Moscow: Nauka. 54 p.
Tiunova, N. A. (1989). Chitinolytic enzymes of microorganisms. Advances in Biological Chemistry, XXX, 199—219.
Trachuk, L. A. (1996). Chitinases of Bacillus cereus: Isolation and characterization. Biochemistry (Moscow), 61(2), 357—368.
Ivanov, M. V. (Ed.). (1989). Chemosynthesis. Moscow: Nauka. 256 p.
Sharon, N., & Lis, H. (1993). Carbohydrates in Cell Recognition. Scientific American, (2/3), 104—113.
Chapter IX. Lipids and Their Metabolism
Alesenko, A. V. (1993). Functional role of lipids in cellular oncogene expression. Advances in Biological Chemistry, XXXIV, 85—102.
Bergelson, L. D. (1975). Biological Membranes. Moscow: Nauka. 183 p.
Brockerhoff, H., & Jensen, R. (1978). Lipolytic enzymes. Moscow: Mir. 395 p.
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Dembitsky, V. M. (1991). Alkoxylipids as relics of the organic world: Formation, biotransformation, and evolution. Biological Sciences, (2), 5—25.
Dyatlovitskaya, E. V. (1995). Sphingolipids and malignant growth. Biochemistry (Moscow), 60(6), 843—848.
Klimova, T. A. (1989). 3-Hydroxy-3-methylglutaryl-CoA reductase in animal Tissues. Advances in Biological Chemistry, XXX, 181—198.
Cornell, T. V. (1984). Lipids of mycobacteria and related microorganisms. Moscow: Moscow University Press. 158 p.
Kostetsky, E. V., Arkhipova, S. F., & Vladimirova, R. R. (1991). Conserved and variable regions of Amino acid sequences in snake phospholipases A2. Molecular Biology, 25(5), 1345—1355.
Kurik, M. V. (1987). Cholesterol: Seven viewpoints. Chemistry and Life, (1), 66—70.
Nikitin, V. M., & Babenko, M. A. (1987). Lipids and Lipid Metabolism IN ontogeny. Advances in Modern Biology, 104(3), 331—345.
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Sim, E. (1985). Membrane biochemistry. Moscow: Mir. 110 p.
Hakomori, S. I. (1986). Glycosphingolipids. Scientific American, (7), 12—23.
Tsyrlov, I. B., & Lyakhov, V. V. (1977). The role of microsomal Phospholipids in the organization and regulation of monooxygenase system activity. Advances in Modern Biology, 84(1), 3—21.
Shvets, V. I., Stepanov, A. E., Krylova, V. N., & Gulak, P. V. (1987). Myo-Inositol and phosphoinositides. Moscow: Nauka. 247 p.
Shulyndin, A. A. (1983). Evolutionary diversity of phospholipid structures. Advances in Modern Biology, 95(1), 16–32.
Pava, H. Biological Oxidation
Archakov, A. I. (1983). Oxygenases of biological membranes. Moscow: Nauka. 54 p.
Vartapetyan, B. B. (1985). Oxygen and the structural-functional organization of The plant cell. Moscow: Nauka. 88 p.
Vinogradov, A. D. (1984). Catalytic properties of mitochondrial ATP synthase. Biochemistry, 49(8), 1220–1238.
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Chapter XI. Water and Mineral Metabolism
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Chapter XII. HORMONES and Their Role in Metabolism
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Class="center">ERRATA

HAPLOID Genome Size

MODULAR STRUCTURE OF THE MITOCHONDRIAL CHAIN

Intracellular Localization of Major Metabolic Pathways

ENDOCRINE Organs of the ANIMAL KINGDOM

Yu. B. Filippovich, Doctor of Biological Sciences, HEAD of the Department of Organic and Biological Chemistry at the Moscow State Pedagogical University, Honorary Professor, and Honored Scientist of the Russian Federation, is widely recognized as an outstanding scholar and educator. Both individually and in collaboration with his departmental colleagues, he has developed a comprehensive set of textbooks and learning guides that fully support biological chemistry training for students majoring in chemistry and/or biology. This educational package consists of five interconnected manuals totaling 92.6 printer's sheets (comprising a textbook, laboratory manual, problem book, special course guide, and comprehensive self-Test Questions). It integrates seamlessly into the modern higher education triad (bachelor's — master's — postgraduate studies), fostering learning motivation and ensuring students can independently select literature for further in-depth Study of the molecular foundations of life. Continuously refined through successive editions, this set has been effectively utilized in higher pedagogical education for three decades, beginning with the publication of his textbook "Fundamentals of Biochemistry" in 1969. As Chairman of the Scientific and Methodological Council for Chemistry under the Directorate of Educational Institutions of the Ministry of Higher and Secondary Education (1969–1991), he spearheaded experimentally grounded initiatives to improve the curricula of faculties and departments training chemistry and biology teachers.
Drawing upon his exceptional scientific Background—having published 6 textbooks, 5 monographs, and 467 scientific journal articles, as well as holding 12 inventor's certificates and mentoring 3 Doctors of Science and 46 Candidates of Sciences—he developed and implemented a visionary concept regarding the interpenetration and interdependence of chemistry and biology, applicable both to fundamental sciences and to chemical and biological disciplines in secondary and higher education. He also introduced a rating-based grading system for the biochemistry course and an advanced format for student examinations featuring scientific reports. Yu. B. Filippovich has participated in the 5th (USSR), 7th (Japan), 8th (Switzerland), 9th (Sweden), and 10th (FRG) Entomological Congresses; the 6th, 7th, 8th, 9th, 10th, 11th, and 15th Conferences of the Federation of European Biochemical Societies (FEBS); and specialized symposia on enzymes (Yugoslavia) and Cell Differentiation and function (Greece), among others. Building on accumulated research data and at his initiative, Russia's first Research Laboratory of Insect Biochemistry was established in 1968 and has since achieved international acclaim.
For his fruitful contributions to public education, Yu. B. Filippovich was awarded the badges "Exemplary Worker of Public Education of the RSFSR" (1966) and "Exemplary Worker of Education of the USSR" (1979), as well as the Order of the Badge of Honour (1978). A veteran of the 1941–1945 war, he is a recipient of two Orders of the Patriotic War (1st Class) and numerous medals. He is a three-time winner of the university's award for best scientific research work (1986, 1987, and 1992). In 1999, he was honored with the Government Prize of the Russian Federation as the author of the exceptional textbook "Fundamentals of Biochemistry" (3rd ed., Moscow: Vysshaya Shkola, 1993, 40 printer's sheets, 141 figures, 14 diagrams, 27 tables, two-color printing, with over 200 Recommended reading titles) and in recognition of his immense contribution to The Development of educational programs, textbooks, and teaching AIDS, as well as his pedagogical mastery and high academic achievements.

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