• Nem Talált Eredményt

Enoch, T., Gould, K. L. & Nurse, P. (1991). Mitotic checkpoint control in fission yeast. Cold Spring Harbor Symposia On Quantitative Biology 56: 409-416.

Evans, T., Rosenthal, E. T., Youngbloom, J., Distel, D. & Hunt, T. (1983). Cyclin: a protein specified by maternal mRNA in sea urchin eggs that is destroyed at each

cleavage division. Cell 33: 389-396.

Fantes, P. & Nurse, P. (1977). Control of cell size at division in fission yeast by a growth-modulated size control over nuclear division. Exp. Cell Res. 107: 377-386.

Fantes, P. A. & Nurse, P. (1981). Division timing: controls, models and mechanisms.

In The Cell Cycle (P. C. L. John , Eds.), pp. 11-33. Cambridge Univ. Press, Cambridge UK.

Farkas, H., Györgyi, L., Póta, G. & Tóth, J. (1992). Az egzotikus kinetikai rendszerek matematikájának alapjai. In Nemlineáris dinamika és egzotikus kinetikai jelenségek kémiai rendszerekben (G. Bazsa , Eds.), pp. 13-116. egyetemi jegyzet, Debrecen-Budapest-Gödöllõ.

Fisher, D. & Nurse, P. (1995). Cyclins of the fission yeast Schizosaccharomyces pombe. Semin. Cell Biol. 6: 73-78.

Fisher, D. & Nurse, P. (1996). A single fission yeast mitotic cyclin B p34cdc2 kinase promotes both S-phase and mitosis in the absence of G1 cyclins. EMBO J. 15: 850-860.

Forsburg, S. & Nurse, P. (1991). Identification of a G1-type cyclin puc1+ in the fission yeast Schizosaccharomyces pombe. Nature 351: 245-248.

Forsburg, S. L. & Nurse, P. (1994). Analysis of the Schizosaccharomyces pombe cyclin puc1: evidence for a role in cell cycle exit. J. Cell Sci. 107 ( Pt 3): 601-613.

Funabiki, H., Kumada, K. & Yanagida, M. (1996). Fission yeast Cut1 and Cut2 are essential for sister chromatid separation, concentrate along the metaphase spindle and form large complexes. EMBO J. 15: 6617-6628.

Hartwell, L. H., Culotti, J., Pringle, J. R. & Reid, B. J. (1974). Genetic control of the cell division cycle in yeast. Science 183: 46-51.

Hayles, J. & Nurse, P. (1992). Genetics of the fission yeast Schizosaccharomyces pombe. Ann. Rev. Genet. 26: 373-402.

Hershko, A. (1997). Roles of ubiquitin-mediated proteolysis in cell cycle control. Curr.

Opin. Cell Biol. 9: 788-799.

Cell 73: 1393-1402.

Irniger, S., Piatti, S., Michaelis, C. & Nasmyth, K. (1995). Genes involved in sister chromatid separation are needed for B-type cyclin proteolysis in budding yeast. Cell 81: 269-278.

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

Killander, D. & Zetterberg, A. (1965). Quantitative cytochemical studies on

interphase growth. 1. Determination of DNA, RNA and mass content of age determined mouse fibroblasts in vitro and of intercellular variation in generation time. Exp. Cell Res. 38: 272-284.

Kim, S. H., Lin, D. P., Matsumoto, S., Kitazono, A. & Matsumoto, T. (1998).

Fission Yeast Slp1: An Effector of the Mad2-Dependent Spindle Checkpoint. Science 279: 1045-1047.

King, R. W., Deshaies, R. J., Peters, J. M. & Kirschner, M. W. (1996). How Proteolysis Drives the Cell Cycle. Science 274: 1652-1659.

Kirchner, T. B. (1990). Time-Zero The Integrated Modeling Environment. In Fort Collins CO: Quaternary Software.

Kitamura, K., Maekawa, H. & Shimoda, C. (1998). Fission yeast Ste9, a homolog of Hct1/Cdh1 and Fizzy-related, is a novel negative regulator of cell cycle progression during G1-phase. Mol. Biol. Cell 9: 1065-1080.

Lundgren, K., Walworth, N., Booher, R., Dembski, M., Kirschner, M. & Beach, D.

(1991). mik1 and wee1 cooperate in the inhibitory tyrosine phosphorylation of cdc2.

Cell 64: 1111-1122.

Martin-Castellanos, C., Blanco, M. A., de Prada, J. M. & Moreno, S. (2000). The puc1 cyclin regulates the G1 phase of the fission yeast cell cycle in response to cell size.

Mol. Biol. Cell 11: 543-554.

Martin-Castellanos, C., Labib, K. & Moreno, S. (1996). B-type cyclins regulate G1 progression in fission yeast in opposition to the p25rum1 cdk inhibitor. EMBO J. 15:

839-849.

Matsumoto, T. (1997). A fission yeast homolog of CDC20/p55CDC/Fizzy is required for recovery from DNA damage and genetically interacts with p34cdc2. Mol. Cell. Biol.

17: 742-750.

Michaelis, C., Ciosk, R. & Nasmyth, K. (1997). Cohesins: Chromosomal Proteins that Prevent Premature Separation of Sister Chromatids. Cell 91: 35-45.

Millar, J. & Russell, P. (1992). The cdc25 M-phase inducer: an unconventional protein phosphatase. Cell 68: 407-410.

Millar, J. B., McGowan, C. H., Lenaers, G., Jones, R. & Russell, P. (1991).

p80cdc25 mitotic inducer is the tyrosine phosphatase that activates p34cdc2 kinase in fission yeast. EMBO J. 10: 4301-4309.

Mitchison, J. M. (1971). The Biology of the Cell Cycle. Cambridge Univ. Press, Cambridge UK.

Mondesert, O., McGowan, C. & Russell, P. (1996). Cig2, a B-type cyclin, promotes the onset of S in Schizosaccharomyces pombe. Mol. Cell. Biol. 16: 1527-1533.

Moreno, S. & Nurse, P. (1994). Regulation of progression through the G1 phase of the cell cycle by the rum1+ gene. Nature 367: 236-242.

Morgan, D. (1995). Principles of CDK regulation. Nature 374: 131-134.

Murray, A. & Hunt, T. (1993). The Cell Cycle. An introduction. W.H.Freeman & Co., New York.

Nasmyth, K. (1995). Evolution of the cell cycle. Philos. Trans. R. Soc. Lond. B. 349:

271-281.

Nasmyth, K. (1996). At the heart of the budding yeast cell cycle. Trends. Genet. 12:

405-412.

Noszticzius, Z. & Wittmann, M. (1992). Nemlineáris jelenségek kísérletes vizsgálata.

In Nemlineáris dinamika és egzotikus kinetikai jelenségek kémiai rendszerekben (G.

Bazsa , Eds.), pp. 261-276. egyetemi jegyzet, Debrecen-Budapest-Gödöllõ.

Novák, B. (1999) A sejtszaporodás reakciókinetikai modelljei. Akadémiai doktori értekezés. Budapest

Novák, B., Csikász-Nagy, A., Győrffy, B., Chen, K. & Tyson, J. J. (1998a).

Mathematical model of the fission yeast cell cycle with checkpoint controls at the G1/S, G2/M and metaphase/anaphase transitions. Biophys. Chem. 72: 185-200.

Novák, B., Csikász-Nagy, A., Győrffy, B., Nasmyth, K. & Tyson, J. J. (1998b).

Novák, B., Tóth, A., Csikász-Nagy, A., Győrffy, B., Tyson, J. J. & Nasmyth, K.

(1999). Finishing the cell cycle. J. Theor. Biol. 199: 223-233.

Novák, B. & Tyson, J. (1993a). Modeling the cell division cycle: M-phase trigger, oscillations, and size control. J. Theor. Biol. 165: 101-134.

Novák, B. & Tyson, J. (1993b). Numerical analysis of a comprehensive model of M-phase control in Xenopus oocyte extracts and intact embryos. J. Cell Sci. 106 ( Pt 4):

1153-1168.

Nurse, P. (1975). Genetic control of cell size at cell division in yeast. Nature 256: 547-551.

Nurse, P. (1990). Universal control mechanism regulating onset of M-phase. Nature 344: 503-508.

Nurse, P. (1991). The Florey Lecture, 1990. How is the cell division cycle regulated?

Phil. Trans. R. Soc. Lond. B. 332: 271-276.

Pardee, A. B. (1989). G1 events and regulation of cell proliferation. Science 246: 603-608.

Russell, P. & Nurse, P. (1986). cdc25+ functions as an inducer in the mitotic control of fission yeast. Cell 45: 145-153.

Russell, P. & Nurse, P. (1987). Negative regulation of mitosis by wee1+, a gene encoding a protein kinase homolog. Cell 49: 559-567.

Sanchez-Diaz, A., Gonzalez, I., Arallano, M. & Moreno, S. (1998). The Cdk

inhibitors p25 rum1 and p40 SIC1 are functional homologues that play similar roles in the regulation of the cell cycle in fission and budding yeast. J. Cell Sci. 111: 843-851.

Schwab, M., Lutum, A. S. & Seufert, W. (1997). Yeast Hct1 is a regulator of Clb2 proteolysis. Cell 90: 683-693.

Schwob, E., Bohm, T., Mendenhall, M. D. & Nasmyth, K. (1994). The B-type cyclin kinase inhibitor p40SIC1 controls the G1 to S transition in S. cerevisiae. Cell 79: 233-244.

Sherr, C. J. (1996). Cancer Cell Cycles. Science 274: 1672-1677.

Sherr, C. J. & Roberts, J. M. (1995). Inhibitors of Mammalian G(1) Cyclin-Dependent Kinases. Genes. Dev. 9: 1149-1163.

Sipiczki, M. (1988). The role of sterility genes (ste and aff) in the initiation of sexual development in Schizosaccharomyces pombe. Mol. Gen. Genet. 213: 529-534.

Skowyra, D., Craig, K., Tyers, M., Elledge, S. & Wade, J. (1997). F-Box Proteins Are Receptors that Recruit Phosphorylated Substrates to the SCF Ubiquitin-Ligase Complex. Cell 91: 209-219.

Stern, B. & Nurse, P. (1996). A quantitative model for the cdc2 control of S phase and mitosis in fission yeast. Trends Genet. 12: 345-350.

Strogatz, S. H. (1994). Nonlinear Dynamics and Chaos: with applications to physics, biology, chemistry, and engineering. Addison-Wesley Publishing Company, Reading.

Sudakin, V., Ganoth, D., Dahan, A., Heller, H., Hershko, J., Luca, F., Ruderman, J. & Hershko, A. (1995). The cyclosome, a large complex containing cyclin-selective ubiquitin ligase activity, targets cyclins for destruction at the end of mitosis. Mol. Biol.

Cell 6: 185-197.

Sveiczer, Á., Csikász-Nagy, A., Győrffy, B., Tyson, J. J. & Novák, B. (2000).

Modeling the fission yeast cell cycle: quantized cycle times in wee1- cdc25D mutant cells. Proc. Natl. Acad. Sci. USA 97: 7865-7870.

Sveiczer, A., Novak, B. & Mitchison, J. M. (1996). The size control of fission yeast revisited. J. Cell Sci. 109 ( Pt 12): 2947-2957.

Sveiczer, A., Novak, B. & Mitchison, J. M. (1999). Mitotic control in the absence of cdc25 mitotic inducer in fission yeast. J. Cell Sci. 112 ( Pt 7): 1085-1092.

Tyson, J. J. (1991). Modeling the cell division cycle: cdc2 and cyclin interactions.

Proc. Natl. Acad. Sci. USA 88: 7328-7332.

Uzawa, S., Samejima, I., Hirano, T., Tanaka, K. & Yanagida, M. (1990). The fission yeast cut1+ gene regulates spindle pole body duplication and has homology to the budding yeast ESP1 gene. Cell 62: 913-925.

Verma, R., Anna, R. S., Huddleston, M. J., Carr, S. A., Reynard, G. & Deshaies, R.

J. (1997). Phosphorylation of Sic1p by G1 Cdk Required for Its Degradation and Entry into S Phase. Science 278: 456-460.

Visintin, R., Prinz, S. & Amon, A. (1997). CDC20and CDH1: A Family of

Substrate-Wuarin, J. & Nurse, P. (1996). Regulating S phase: CDKs, licensing and proteolysis.

Cell 85: 785-787.

Yamaguchi, S., Murakami, H. & Okayama, H. (1997). A WD Repeat Protein Controls the Cell Cycle and Differentiation by Negatively Regulating Cdc2/B-Type Cyclin Complexes. Mol. Biol. Cell 8: 2475-2486.

Yanagida, M. (2000). Cell cycle mechanisms of sister chromatid separation; roles of Cut1/separin and Cut2/securin. Genes to Cells 5: 1-8.

Zachariae, W., Shin, T., Galova, M., Obermaier, B. & Nasmyth, K. (1996).

Identification of subunits of the anaphase-promoting complex of Saccharomyces cerevisiae. Science 274: 1201-1204.

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