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The Cell Cycle: Principles of Control: Online Resources

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Chapter 5 Illustrations
 

Illustrations from Chapter 5 of The Cell Cycle: Principles of Control may be downloaded here. Figures may be downloaded as JPEGs for viewing on screen or as printable TIFFs, either individually or as a complete set in a zip file. Click here for help with downloading files.

ZIP file of JPEG images

ZIP file of TIFF images


Figure 5-1 Stages of early mitosis in a vertebrate cell
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Figure 5-2 Stages of late M phase in a vertebrate cell
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Figure 5-3 Overview of mitotic control mechanisms
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Figure 5-4 The B-type cyclin family
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Figure 5-5 Viability of budding yeast cells lacking B-type cyclins
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Figure 5-6 Importance of Clb2 in mitotic entry
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Figure 5-7 Table of mitotic phenotypes of Drosophila cyclin mutants
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Figure 5-8 Mitotic cyclin levels in a somatic mammalian cell
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Figure 5-9 The logic of mitotic control in fission yeast
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Figure 5-10 Activities of key regulators during entry into mitosis
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Figure 5-11 Multiple feedback loops governing Cdk1 activation in early mitosis
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Figure 5-12 Nuclear accumulation of cyclin B1–Cdk1 and Cdc25C in late prophase
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Figure 5-13 Phosphorylation of cyclin B1 controls its localization
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Figure 5-14 Table of polo-related protein kinases
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Figure 5-15 General structure of Plk
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Figure 5-16 Localization of Plk in mitotic cells
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Figure 5-17 Table of aurora-related protein kinases
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Figure 5-18 Localization of aurora kinases in mitotic cells
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Figure 5-19 Formation of catenated DNA during DNA replication
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Figure 5-20 Table of cohesin complex subunits
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Figure 5-21 Models of SMC and cohesin structure
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Figure 5-22 Condensation and resolution of human sister chromatids in early mitosis
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Figure 5-23 The hierarchical folding model of chromosome condensation
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Figure 5-24 Table of subunits of the condensin complex
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Figure 5-25 Structure of condensin
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Figure 5-26 Plk and aurora B are required for the removal of cohesin from chromosome arms in early mitosis
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