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Цитированная. Baserya R. The Biology of Cell Reproduction




Общая

Baserya R. The Biology of Cell Reproduction. Cambridge, MA, Harvard University Press, 1985.

 

Beach D., Basilica C., Newport J., eds. Cell Cycle Control in Eukaryotes. Cold Spring Harbor NY, Cold Spring Harbor Laboratory, 1988.

 

John P.C.I., ed. The Cell Cycle. Cambridge U.K., Cambridge University Press, 1981.

 

Mitchison J. M. The Biology of the Cell Cycle. Cambridge U. K., Cambridge University Press, 1971.

 

Pollack R. Readings in Mammalian Cell Culture, 2nd ed. Cold Spring Harbor, NY, Cold Spring Harbor Laboratory, 1981. (An anthology, including many important papers on cell growth and division.)

 

Prescott D.M. Reproduction of Eukaryotic Cells. New York, Academic Press, 1976.

 

1. Baser да R. The Biology of Cell Reproduction. Cambridge, MA, Harvard University Press, 1985.

 

Howard A., Pelc S. R. Nuclear incorporation of P32 as demonstrated by autoradiographs. Exp. Cell Res., 2, 178-187,1951.

 

Lloyd D., Poole R. K., Edwards S. W. The Cell Division Cycle. New York, Academic Press, 1982.

 

Mitchison J. M. The Biology of the Cell Cycle. Cambridge, U. K., CambridgeUniversity Press, 1971.

 

2. Van Dilla M.A., Trujillo Т. Т., Mullaney P.P., Coulter J.R. Cell microfluorometry: a method for rapid fluorescence measurement. Science, 163, 1213-1214, 1969.

 

3. Creanor J., Mitchison J. M. Patterns of protein synthesis during the cell cycle of the fission yeast Schizosaccharomyces pombe. J. Cell Sci., 58, 263-285, 1982.

 

Pardee А. В., Coppock D.L., Yang H.C. Regulation of cell proliferation at the onset of DNA synthesis. J. Cell Sci., Suppl. 4, 171-180, 1986.

 

4. Rao P. N., Johnson R. T. Mammalian cell fusion: studies on the regulation of DNA synthesis and mitosis. Nature, 225, 159 164, 1970.

 

5. Xeros N. Deoxyribonucleotide control and synchronization of mitosis. Nature, 194, 682-683, 1962.

 

6. Mitchison J. M. The Biology of the Cell Cycle, pp. 234-244. Cambridge, U. K., Cambridge University Press, 1971.

 

Schlegel R., Pardee A. B. Caffeine-induced uncoupling of mitosis from the completion of DNA replication in mammalian cells. Science, 232, 1264-1266, 1986.

 

7. Johnson R. Т., Rao P. N. Mammalian cell fusion: induction of premature chromosome condensation in interphase nuclei. Nature, 226, 717 '-122, 1970.

 

8. Blow J. J., Laskey R. A. A role for the nuclear envelope in controlling DNA replication within the cell cycle. Nature, 332, 546 548, 1988.

 

9. Kirschner M., Newport J., Gerhart J. The timing of early developmental events in Xenopus. Trends Genet., 1, 41-47, 1985.

 

10. Gerhart J., Wu M., Kirschner M. Cell cycle dynamics of an M-phase-specific cytoplasmic factor in Xenopus laevis oocytes and eggs. J. Cell Biol., 98, 1247-1255, 1984.

 

Lohka M. J., Hayes M. K., Mailer J. L. Purification of maturation-promoting factor, an intracellular regulator of early mitotic events. Proc.

 

Natl. Acad. Sci. USA, 85, 3009-3013, 1988.

 

Newport J., Kirschner M. Regulation of the cell cycle during early Xenopus development. Cell, 37, 731-742, 1984.

 

11. Hara K., Tydeman P., Kirschner M. A cytoplasmic clock with the same period as the division cycle in Xenopus eggs. Proc. Natl. Acad. Sci.

 

USA, 77, 462-466, 1980.

 

Kimelman D., Kirschner M., Scherson T. The events of the midblastula transition in Xenopus are regulated by changes in the cell cycle. Cell, 48, 399-407, 1987.

 

Pines J., Hunt T. Molecular cloning and characterization of the mRNA for cyclin from sea urchin eggs. EMBO J., 6, 2987-2995, 1987.

 

Swenson K. I.. Farrell K. M., Ruderman J. V. The clam embryo protein cyclin A induced entry into M phase and the resumption of meiosis in Xenopus oocytes. Cell, 47, 861 870, 1986.

 

12. Nurse P. Cell cycle control genes in yeast. Trends Genet., 1, 51-55, 1985.

 

Pringle J. R., Hartwell L. H. The Saccharomyces cerevisiae cell cycle. In: The Molecular Biology of the Yeast Saccharomyces, Life Cycle and Inheritance (J. N. Starthern, E. W. Jones, J. R. Broach, eds.), pp. 97-142. Cold Spring Harbor, NY, Cold Spring Harbor Laboratory, 1981.

 

Watson J. D., Hopkins N. H., Roberts J. W., Weiner A. M. Molecular Biology of the Gene, 4th ed., pp. 550-592. Menlo Park, CA, Benjamin-

Cummings, 1987.

 

13. Hartwell L.H. Cell division from a genetic perspective. J. Cell Biol., 77, 627-637, 1978.

 

 


 

Албертс Б., Брей Д., Льюис Дж., Рэфф М., Робертс К. Уотсон Дж. Д. Молекулярная биология клетки: В 3-х т. 2-е изд. перераб. и доп. Т. 2.: Пер. с англ. – М.: Мир, 1993. – 539 с.

 

Nurse P. Genetic analysis of the cell cycle. Symp. Soc. Gen. Microbiol., 31, 291-315, 1981.

 

14. Hayles J., Nurse P. Cell cycle regulation in yeast. J. Cell Sci., Suppl. 4, 155-170, 1986.

 

Johnston G. C., Pringle J. R., Hartwell L. H. Coordination of growth with cell division in the yeast Saccharomyces cerevisiae. Exp. Cell Res., 105, 79-98, 1977.

 

Prescott D. M. Changes in nuclear volume and growth rate and prevention of cell division in Amoeba proteus resulting from cytoplasmic amputations. Exp. Cell Res., 11, 94-98, 1956.

 

15. Dunphy W.G., Brizuela L., Beach D., Newport J. The Xenopus cdc2 protein is a component of MPF, a cytoplasmic regulator of mitosis. Cell, 54, 423-431, 1988.

 

Gautier J., Nor bur у С., Lohka M., Nurse P., Mailer J. Purified maturation-promoting factor contains the product of a Xenopus homolog of the fission yeast cell cycle control gene cdc2 +. Cell, 54, 433-439, 1988.

 

Lee M. G., Nurse P. Complementation used to clone a human homologue of the fission yeast cell cycle control gene cdc2. Nature, 327, 31-35, 1987.

 

Murray A. W. A mitotic inducer matures. Nature, 335, 207-208, 1988.

 

Solomon M. et al. Cyclin in fission yeast. Cell, 54, 738-740, 1988.

 

16. Cheng H, LeBlond C. P. Origin, differentiation and renewal of the four main epithelial cell types in the mouse small intestine. Am. J. Anat., 141, 461-480, 1974. Goss R.J. The Physiology of Growth. New York, Academic Press, 1978.

 

17. Pardee A. B. A restriction point for control of normal animal cell proliferation. Proc. Natl. Acad. Sci. USA, 71, 1286-1290, 1974.

 

18. Brooks R. F. The transition probability model: successes, limitations and deficiencies. In: Temporal Order (L. Rensing, N.I. Jaeger, eds.).

 

Berlin, Springer, 1985. Shields R. Transition probability and the origin of variation in the cell cycle. Nature, 267, 704-707, 1977.

 

Smith J.A., Martin L. Do cells cycle? Proc. Natl. Acad. Sci. USA, 70, 1263-1267, 1973.

 

19. DeuelT.F. Polypeptide growth factors: roles in normal and abnormal growth. Annu. Rev. Cell Biol., 3, 443-492, 1987.

 

Evered D., Nugent J., Whelan J., eds. Growth Factors in Biology and Medicine. Ciba Foundation Symposium 116. London, Pitman, 1985.

 

Sato G., ed. Hormones and Cell Culture. Cold Spring Harbor, NY, Cold Spring Harbor Laboratory, 1979.

 

Wang J.L., Hsu Y.-M. Negative regulators of cell growth. Trends Biochem. Sci., 11, 24-27, 1986.

 

20. Ross R., Raines E. W., Bowen-Pope D. F. The biology of platelet-derived growth factor. Cell, 46, 155-169, 1986.

 

Stiles C.D. The molecular biology of platelet-derived growth factor. Cell, 33, 653-655, 1983.

 

21. Dunn G.A., Ireland G. W. New evidence that growth in 3T3 cell cultures is a diffusion-limited process. Nature, 312, 63-65, 1984.

 

Holley R. W., Kierman J. A. "Contact inhibition" of cell division in 3T3 cells. Proc. Natl. Acad. Sci. USA, 60, 300 304, 1968.

 

Stoker M. G. P. Role of diffusion boundary layer in contact inhibition of growth. Nature, 246, 200-203, 1973.

 

22. Folkman J., Moscona R. Role of cell shape in growth control. Nature, 273, 345-349, 1978.

 

O'Neill C., Jordan P., Ireland G. Evidence for two distinct mechanisms of anchorage simulation in freshly explanted and 3T3 mouse fibroblasts. Cell, 44, 489-496, 1986.

 

23. Brooks R.F. Regulation of the fibroblast cell cycle by serum. Nature, 260, 248-250, 1976.

 

Larsson O., Zetterberg A., Engstrom W. Consequences of parental exposure to serum-free medium for progeny cell division. J. Cell Sci., 75, 259-268, 1985.

 

Zetterberg A., Larsson O. Kinetic analysis of regulatory events in Gl leading to proliferation or quiescence of Swiss 3T3 cells. Proc. Natl.

 

Acad. Sci. USA, 82, 5365-5369, 1985.

 

24. Baser да R. The Biology of Cell Reproduction, pp. 103-113. Cambridge, MA, Harvard University Press, 1985.

 

Larsson 0., Dafgard E., Engstrom W., Zetterberg A. Immediate effects of serum depletion on dissociation between growth in size and cell division in proliferating 3T3 cells. J. Cell. Physiol., 127, 267-273, 1986.

 

25. Bauer E. et al. Diminished response of Werner's syndrome fibroblasts to growth factors PDGF and FGF. Science, 234, 1240-1243, 1986.

 

Hayflick L. The limited in vitro lifetime of human diploid cell strains. Exp. Cell Res., 37, 614 636, 1965.

 

Holiday R., ed. Genes, Proteins, and Cellular Aging. New York, Van Nostrand, 1986. (An anthology of papers on cell senescence.)

 

Loo D. Т., Fuquay J. L, Rawson C. L., Barnes D. W. Extended culture of mouse


 

Албертс Б., Брей Д., Льюис Дж., Рэфф М., Робертс К. Уотсон Дж. Д. Молекулярная биология клетки: В 3-х т. 2-е изд. перераб. и доп. Т. 2.: Пер. с англ. – М.: Мир, 1993. – 539 с.

 

embryo cells without sensecence: inhibition by serum. Science, 236, 200-202, 1987.

 

Rheinwald J.G., Green H. Epidermal growth factor and the multiplication of cultured human epidermal keratinocytes. Nature, 265, 421 424, 1977.

 

Smith J. R., Whitney R. G. Intraclonal variation in proliferative potential of human diploid fibroblasts: stochastic mechanism for cellular aging.

 

Science, 207, 82-84, 1980.

 

26. Kahn P., Grqf Т., eds. Oncogenes and Growth Control. Berlin, Springer, 1986.

 

Watson J.D., Hopkins N.H., Roberts J. W., Weiner A.M. Molecular Biology of the Gene, 4th ed., pp. 961 1096. Menlo Park, CA, Benjamin-

Cummings, 1987.

 

27. Feramisco J., Ozanne В., Stiles C., eds. Cancer Cells 3: Growth Factors and Transformation. Cold Spring Harbor, NY, Cold Spring Harbor Laboratory, 1985

Temin H. M., Rubin H. Characteristics of an assay for Rous Sarcoma virus and Rous sarcoma cells in tissue culture. Virology, 6, 669 688, 1958.

 

28. Bishop J. M. Viral oncogenes. Cell, 42, 23-38, 1985.

 

Martin G.S. Rous sarcoma virus: a function required for the maintenance of the transformed state. Nature, 227, 1021 1023, 1970.

 

Swanstrom R., Parker R. C, Varmus H. E., Bishop J. M. Transduction of a cellular oncogene the genesis of Rous sarcoma virus. Proc. Natl.

 

Acad. Sci. USA, 2519 2523, 1983.

 

Varmus H. Cellular and viral oncogenes. In: The Molecular Basis of Blood Diseases (G. Stamatoyannopoulos, A. W. Nienhuis, P. Leder, P. W.

 

Majerus. eds.), pp. 271-345. Philadelphia, Saunders, 1987.

 

29. Harris H. The genetic analysis of malignancy. J. Cell Sci., Suppl. 4, 431 444, 1986 Klein G. The approaching era of the tumor suppressor genes.

 

Science, 238 1539 1545, 1987.

 

Weinbercj R.A. A molecular basis of cancer. Sci. Am., 249(5), 126 142, 1983.

 

30. Doolittle R. F. el al. Simian sarcoma virus oncogene, \-sis, is derived from the gene (or genes) encoding a platelet-derived growth factor.

 

Science, 221, 275 277, 1983

Marshall C.J. Oncogenes. J. Cell Sci., Suppl. 4, 417 430, 1986.

 

Waterfield M. D. et al. Platelet-derived growth factor is structurally related to th putative transforming protein p28sls of simian sarcoma virus.

 

Nature, 304, 35-39 1983.

 

31. Almendral J. M. et al. Complexity of the early genetic response to growth factors in mouse fibroblasts. Мо.. Cell. Biol., 8, 2140 2148, 1988.

 

Hunter T. The proteins of oncogenes. Sci. Am., 251(2), 70-79, 1984.

 

Robertson M. Molecular associations and conceptual connections. Nature, 334, 100 102, 1988.

 

Yu С. L., Tsai M. H., Stacey D. W. Cellular ras activity and phospholipid metabolism. Cell, 52, 63-71, 1988.

 

32. Herman В., Pledger W.J. Platelet-derived growth factor-induced alterations in vinculin and actin distributions in BALB/c-ЗТЗ cells. J. Cell Biol., 100, 1031 1040, 1985.

 

Hirst R., Horwitz A.. Buck C., Rohrschneider L. Phosphorylation of the fibronectin receptor complex in cells transformed by oncogenes that encode tyrosine kinases. Proc. Natl. Acad. Sci. USA, 83, 6470 6474, 1986.

 

Jove R., Hanafusa H. Cell transformation by the viral src oncogene. Annu. Rev. Cell Biol., 3, 31 56, 1987.

 

33. Burger M. M. Proteolytic enzymes initiating cell division and escape from contact inhibition of growth. Nature, 227, 170-171, 1970.

 

Sulivan L. M., Quigley J. P. An anticatalytic monoclonal antobody to avian plas-minogen activator: its effect on behavior of RSV-transformed chick fibroblasts. Cell, 45, 905-915, 1986.

 

34. Adamson E.D. Oncogenes in development. Development, 99, 449 471, 1987.

 

Bryant P.J., Bryant S. V., French V. Biological regeneration and pattern formation. Sci. Am., 237(1), 67-81, 1977.

 

Fankhauser G. Nucleo-cytoplasmic relations in amphibian development. Int. Rev. Cytol., 1, 165-193, 1952.

 

35. Bajer A.S., Mole-Bajer J. Spindle Dynamics and Chromosome Movements. New York, Academic Press, 1972.

 

Mclntosh J.R. Mechanisms of mitosis. Trends Biochem. Sci., 9, 195-198, 1984.

 

Mazia C. Mitosis and the physiology of cell division. In: The Cell (J. Brachet, A. E. Mirsky, eds.), Vol. 3, pp. 77-412. London, Academic Pess, 1961.

 

Wilson E. B. The Cell in Development and Heredity, 3rd ed. with corrections. New York, Macmillan Company, 1928. (Reprinted, New York, Garland, 1987.)

 

36. Inoue S., Sato H. Cell motility by labile association of molecules: the nature of mitotic spindle fibers and their role in chromosome movement.

 

J. Gen. Physiol., 50, 259-292, 1967.

 

Karsenti E., Maro B. Centrosomes and the spatial distribution of microtubules in animal cells. Trends Biochem. Sci., 11, 460 463, 1986.

 

 


 

Албертс Б., Брей Д., Льюис Дж., Рэфф М., Робертс К. Уотсон Дж. Д. Молекулярная биология клетки: В 3-х т. 2-е изд. перераб. и доп. Т. 2.: Пер. с англ. – М.: Мир, 1993. – 539 с.

 

Kirschner M., Mitchison T. Beyond self-assembly: from microtubules to morphogenesis. Cell, 45, 329-342, 1986.

 

Kuriyama R., Borisy G. G. Microtubule-nucleating activity of centrosomes in Chinese hamster ovary cells is independent of the centriole cycle but coupled to the mitotic cycle. J. Cell Biol., 91, 822 826, 1981.

 

Saxton W. M. et al. Tubulin dynamics in cultured mammalian cells. J. Cell Biol., 99, 2175-2186, 1984.

 

37. Clarke L., Carbon J. The structure and function of yeast centromeres. Annu. Rev. Genet., 19, 29-56, 1985.

 

Earnsham W. C. et al. Molecular cloning of cDNA for CENP-B, the major human centromere autoantigen. J. Cell Biol., 104, 817-829, 1987.

 

Mitchison T.J., Evans L., Schulze E., Kirschner M. Sites of microtubule assembly and disassembly in the mitotic spindle. Cell, 45, 515-527, 1986.

 

Peterson J. В., Ris H. Electron microscopic study of the spindle and chromosome movement in the yeast Saccharomyces cerevisiae. J. Cell Sci., 22, 219-242, 1976.

 

Rieder C. L. The formation, structure and composition of the mammalian kinetochore fiber. Int. Rev. Cytol., 79, 1-58, 1982.

 

38. Euteneuer U., Mclntosh J. R. Structural polarity of kinetochore microtubules in PtKj cells. J. Cell Biol., 89, 338-345, 1981.

 

Mitchison T.J., Kirschner M. W. Properties of the kinetochore in vitro. II. Microtubule capture and ATP-dependent translocation. J. Cell Biol., 101, 766-777, 1985.

 

Rieder С. L., Davison E. A., Jensen C.W., Cassimeris L., Salmon E. D. Oscillatory monooriented movements of chromosomes and their position relative to the spindle pole result from the ejection properties of the aster and half-spindle. J. Cell Biol., 103, 581 591, 1986.

 

Roos U.-P. Light and electron microscopy of rat kangaroo cells in mitosis. III. Patterns of chromosome behavior during prometaphase.

 

Chromosoma, 54, 363-385, 1976.

 

39. Begg D.A., EllisG.W. Micromanipulation studies of chromosome movement. J. Cell Biol., 82, 528-541, 1979.

 

Nicklas R. B. The forces that move chromosomes in mitosis. Annu. Rev. Biophys. Biophys. Chem., 17, 431-450, 1988.

 

Nicklas R. В., Kubai D. F. Microtubules, chromosome movement, and reorientation after chromosomes are detached from the spindle by micromanipulation. Chromosoma, 92, 313-324, 1985.

 

40. Hays T.S., Wise D., Salmon E.D. Traction force on a kinetochore at metaphase acts as a linear function of kinetochore fiber length. J. Cell Biol., 93, 374-382, 1982.

 

McNeill P. A., Berns M. W. Chromosome behavior after laser microirradiation of a single kinetochore in mitotic PtK2 cells. J. Cell Biol., 88, 543-553, 1981.

 

Ostergren G. The mechanism of coordination in bivalents and multivalents. The theory of orientation by pulling. Hereditas, 37, 85-156, 1951.

 

41. Hepler P. K., Callaham D. A. Free calcium increases during anaphase in stamen hair cells of Tradescantia. J. Cell Biol., 105, 2137-2143, 1987.

 

Murray A. W., Szostak J. W. Chromosome segregation in mitosis and meiosis. Annu. Rev. Cell Biol., 1, 289-315, 1985.

 

Wolniak S. M. The regulation of mitotic spindle function. Biochem. Cell Biol., 66, 490-514, 1988.

 

42. Ris H. The anaphase movement of chromosomes in the spermatocytes of grasshoppers. Biol. Bull. (Woods Hole), 96, 90-106, 1949.

 

43. Gorbsky G. J., Sammak P. J., Borisy G. G. Microtubule dynamics and chromosome motion visualized in living anaphase cells. J. Cell Biol., 106, 1185-1192, 1988.

 

Mitchison T.J. Microtubule dynamics and kinetochore function in mitosis. Annu. Rev. Cell Biol., 4, 527 549, 1988.

 

Nicklas R. B. Measurements of the force produced by the mitotic spindle in anaphase. J. Cell Biol., 97, 542-548, 1983.

 

Spurck T. P., Pickett-Heaps J. D. On the mechanism of anaphase A: Evidence that ATP is needed for microtubule disassembly and not generation of polewards force. J. Cell Biol., 105, 1691-1705, 1987.

 

44. Aist J. R., Berns M. W. Mechanics of chromosome separation during mitosis in Fusarium (Fungi imperfecti): new evidence from ultrastructural and laser micro-beam experiments. J. Cell Biol., 91, 446-458, 1981.

 

Masuda H., Cande W. Z. The role of tubulin polymerization during spindle elongation in vitro. Cell, 39, 193-202, 1987.

 

Pickett-Heaps J. D. Mitotic mechanisms: an alternative view. Trends Biochem. Sci., 11, 504-507, 1986.

 

45. Gerace L., Blobel G. The nuclear envelope lamina is reversibly depolymerized during mitosis. Cell, 19, 277 287, 1980.

 

Gerace L., Burke B. Functional organization of the nuclear envelope. Annu. Rev. Cell Biol., 4, 335-374, 1988.

 

 


 

Албертс Б., Брей Д., Льюис Дж., Рэфф М., Робертс К. Уотсон Дж. Д. Молекулярная биология клетки: В 3-х т. 2-е изд. перераб. и доп. Т. 2.: Пер. с англ. – М.: Мир, 1993. – 539 с.

 

SwansonJ.A,, McNeil P.L. Nuclear reassembly excludes large macromolecules. Science, 238, 548-550, 1987.

 

46. Kirschner M. W., Newport J., Gerhart J, The timing of early developmental events in Xenopus. Trends Genet., 1, 41-47, 1985.

 

47. Rappaport R. Establishment of the mechanism of cytokinesis in animal cells. Int. Rev. Cytol., 105, 245-281, 1986.

 

Tolle H. G., Weber K., Osborn M. Keratin filament disruption in interphase and mitotic cells-how is it induced? Eur. J. Cell Biol., 43, 35-47, 1987.

 

White J. G., Borisy G. G. On the mechanism of cytokinesis in animal cells. J. Theor. Biol., 101, 289-316, 1983.

 

48. DeLozanne A., Spudich J. A. Disruption of the dictyostelium myosin heavy chain gene by homologous recombination. Science, 236, 1086-1091, 1987.

 

Knecht D.A., Loomis W.F. Antisense RNA inactivation of myosin heavy chain gene depression in Dictyostelium discoideum. Science, 236, 1081-1086, 1987.

 

Mabuchi I., Okuno M. The effect of myosin antibody on the division of starfish blastomeres. J. Cell Biol., 74, 251-263, 1977.

 

Schroeder Т. Е. Actin in dividing cells: contractile ring filaments bind heavy meromyosin. Proc. Natl. Acad. Sci. USA, 70, 1688 1692, 1973.

 

49. Gunning B. E, S., Wick S. M. Preprophase bands, phragmoplasts and spatial control of cytokinesis. J. Cell Sci. Suppl. 2, 157-179, 1985.

 

Huffaker T.C., Hoyt M.A., Botstein D. Genetic analysis of the yeast cytoskeleton. Annu. Rev. Genet., 21, 259-284, 1987.

 

Lloyd C. W. The plant cytoskeleton: the impact of fluorescence microscopy. Annu. Rev. Plant Physiol., 38, 119-139, 1987.

 

Pickett-Heaps J. D., Northcote D. H. Organization of microtubules and endoplasmic reticulum during mitosis and cytokinesis in wheat meristems. J. Cell Sci., 1, 109-120, 1966.

 

50. Lucocq J. M., Warren G. Fragmentation and partitioning of the Golgi apparatus during mitosis in HeLa cells. EMBO J., 6, 3239-3246, 1987.

 

51. Hill D.P., Strome S. An analysis of the role of microfilaments in the establishment and maintenance of asymmetry in Caenorhabditis elegans.

Dev. Biol., 125, 75 84, 1988.

 

Kenyan C. Cell lineage and the control of Caenorhabditis elegans development. Phil. Trans. R. Soc. Lond. (Biol.), 312, 21-38, 1985.

 

52. Donachie W.D., Robinson A.C. Cell division: parameter values and the process in Escherichia coli and Salmonella typhimurium. Cellular and Molecular Biology (F.C. Neidhardt, et al., eds.), pp. 1578-1593. Washington, DC, American Society for Microbiology, 1987.

 

Heath I. B. Variant mitoses in lower eukaryotes: indicators of the evolution of mitosis? Int. Rev. Cytol., 64, 1-80, 1980.

 

Kubai D.F. The evolution of the mitotic spindle. Int. Rev. Cytol., 43, 167-227, 1975.

 

Wise D. The diversity of mitosis: the value of evolutionary experiments. Biochem. Cell Biol., 66, 515-529, 1988.

 

 


 

Албертс Б., Брей Д., Льюис Дж., Рэфф М., Робертс К. Уотсон Дж. Д. Молекулярная биология клетки: В 3-х т. 2-е изд. перераб. и доп. Т. 2.: Пер. с англ. – М.: Мир, 1993. – 539 с.

 




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