[1]
Blow, J. 2009. Replication Licensing | HS Talks. The Biomedical & Life Sciences Collection. HS Talks.
[2]
Coudreuse, D. and Nurse, P. 2010. Driving the Cell Cycle With a Minimal CDK Control Network. Nature. 468, 7327 (2010), 1074–1079. DOI:https://doi.org/10.1038/nature09543.
[3]
Coudreuse, D. and Nurse, P. 2010. Driving the Cell Cycle With a Minimal CDK Control Network. Nature. 468, (2010), 1074–1079. DOI:https://doi.org/10.1038/nature09543.
[4]
Darzynkiewicz, Z. 1999. Cell Cycle Analysis by Flow Cytometry. Encyclopedia of Life Sciences. Wiley Interscience.
[5]
Dinarina, A. et al. 7AD. Chromatin Shapes the Mitotic Spindle. Chromatin Shapes the Mitotic Spindle. 138, 3 (7AD), 502–513.
[6]
Dyall, S.D. et al. 2004. Ancient Invasions: From Endosymbionts to Organelles. Science. 304, 5668 (2004).
[7]
Dynlacht, B. 2007. The E2F Family and Transcriptional Control of the Mammalian Cell Cycle | HS Talks. The Biomedical & Life Sciences Collection. HS Talks.
[8]
Hayles, J. and Nurse, P. 2001. A Journey Into Space. Nature Reviews Molecular Cell Biology. 2, 9 (2001), 647–656. DOI:https://doi.org/10.1038/35089520.
[9]
van den Heuvel, S. and Dyson, N.J. 2008. Conserved Functions of the pRB and E2F Families. Nature Reviews Molecular Cell Biology. 9, 9 (2008), 713–724. DOI:https://doi.org/10.1038/nrm2469.
[10]
Horvitz, H. and Herskowitz, I. 1992. Mechanisms of Asymmetric Cell Division: Two Bs or Not Two Bs, That Is the Question. Cell. 68, 2 (1992), 237–255.
[11]
Jarvis, P. and López-Juez, E. 2013. Biogenesis and Homeostasis of Chloroplasts and Other Plastids. Nature Reviews Molecular Cell Biology. 14, 12 (2013), 787–802. DOI:https://doi.org/10.1038/nrm3702.
[12]
Karsenti, E. 2009. Bipolar Spindle Assembly | HS Talks. The Biomedical & Life Sciences Collection. HS Talks.
[13]
Karsenti, E. 2008. Self-organization in cell biology: a brief history. Nature Reviews Molecular Cell Biology. 9, 3 (2008), 255–262. DOI:https://doi.org/10.1038/nrm2357.
[14]
Knoblich, J.A. 2008. Mechanisms of Asymmetric Stem Cell Division. Cell. 132, 4 (2008), 583–597. DOI:https://doi.org/10.1016/j.cell.2008.02.007.
[15]
Koshland, D. 2009. Sister Chromatid Cohesion: Simple Concept, Complex Reality | HS Talks. The Biomedical & Life Sciences Collection. HS Talks.
[16]
Lénárt, P. et al. 2005. A contractile nuclear actin network drives chromosome congression in oocytes. Nature. 436, 7052 (Aug. 2005), 812–818. DOI:https://doi.org/10.1038/nature03810.
[17]
Lodish, H.F. 2016. Vesicular Traffic, Secretion, and Endocytosis. Molecular Cell Biology. W.H. Freeman Macmillan Learning.
[18]
Lodish, H.F. 2016. Vesicular Traffic, Secretion, and Endocytosis. Molecular Cell Biology. W.H. Freeman Macmillan Learning.
[19]
Lodish, H.F. 2016. Vesicular Traffic, Secretion, and Endocytosis. Molecular Cell Biology. W.H. Freeman Macmillan Learning.
[20]
Marston, A.L. and Amon, A. 2005. Meiosis: Cell-cycle controls shuffle and deal. Nature Reviews Molecular Cell Biology. 6, 10 (2005), 818–818. DOI:https://doi.org/10.1038/nrm1759.
[21]
Medema, R. 2009. The G2/M transition. The Biomedical & Life Sciences Collection.
[22]
Morgan, D.O. 2012. The Cell Cycle: Principles of Control. Oxford University Press.
[23]
Morgan, D.O. 2012. The Cell Cycle: Principles of Control. Oxford University Press.
[24]
Morgan, D.O. 2012. The Cell Cycle: Principles of Control. Oxford University Press.
[25]
Morgan, D.O. 2012. The Cell Cycle: Principles of Control. Oxford University Press.
[26]
Morgan, D.O. 2012. The Cell Cycle: Principles of Control. Oxford University Press.
[27]
Morgan, D.O. 2012. The Cell Cycle: Principles of Control. Oxford University Press.
[28]
Morgan, D.O. 2012. The Cell Cycle: Principles of Control. Oxford University Press.
[29]
Morgan, D.O. 2012. The Cell Cycle: Principles of Control. Oxford University Press.
[30]
Morgan, D.O. 2012. The Cell Cycle: Principles of Control. Oxford University Press.
[31]
Scarpulla, R. 2007. Nuclear Control of Respiratory Chain Expression by Transcriptional Activators and Coactivators | HS Talks. The Biomedical & Life Sciences Collection. HS Talks.
[32]
Steinkamp, J.A. 1999. Flow Cytometers. Encyclopedia of Life Sciences. Wiley Interscience.
[33]
Tate, S. and Ko Ferrigno, P. 1999. Cell Cycle: Synchronization at Various Stages. Encyclopedia of Life Sciences. Wiley Interscience.
[34]
The Biomedical & Life Sciences Collection | HS Talks: https://hstalks.com/biosci/.
[35]
Tyson, J.J. et al. 2001. Network Dynamics and Cell Physiology. Nature Reviews Molecular Cell Biology. 2, 12 (2001), 908–916. DOI:https://doi.org/10.1038/35103078.
[36]
Tyson, J.J. and Novak, B. 2008. Temporal Organization of the Cell Cycle. Current Biology. 18, 17 (2008), R759–R768. DOI:https://doi.org/10.1016/j.cub.2008.07.001.
[37]
Waters, M.T. and Langdale, J.A. 2009. The Making of a Chloroplast. The EMBO Journal. 28, 19 (2009), 2861–2873. DOI:https://doi.org/10.1038/emboj.2009.264.
[38]
Wittenberg, C. 2009. START control in yeast. The Biomedical & Life Sciences Collection.
[39]
Yeeles, J.T.P. et al. 2015. Regulated eukaryotic DNA replication origin firing with purified proteins. Nature. 519, 7544 (Mar. 2015), 431–435. DOI:https://doi.org/10.1038/nature14285.
[41]
Current Opinion in Cell Biology.
[42]
Imperial College London media library : Kohn lecture 2010 - Cell cycle control.
[43]
Nature Reviews Molecular Cell Biology.
[44]
The great ideas of biology (Paul Nurse Lecture).
[45]
2012. The Moth and the World Science Festival present Paul Nurse: Family Trees Can Be Dangerous.
[46]
Trends in Cell Biology.