Koshland D, Strunnikov A
Department of Embryology, Carnegie Institution of Washington, Baltimore, Maryland 21210, USA.
Annu Rev Cell Dev Biol. 1996;12:305-33. doi: 10.1146/annurev.cellbio.12.1.305.
In this chapter, we review the structure and composition of interphase and mitotic chromosomes. We discuss how these observations support the model that mitotic condensation is a deterministic process leading to the invariant folding of a given chromosome. The structural studies have also placed constraints on the mechanism of condensation and defined several activities needed to mediate condensation. In the context of these activities and structural information, we present our current understanding of the role of cis sites, histones, topoisomerase II, and SMC proteins in condensation. We conclude by using our current knowledge of mitotic condensation to address the differences in chromosome condensation observed from bacteria to humans and to explore the relevance of this process to other processes such as gene expression.
在本章中,我们回顾了间期和有丝分裂染色体的结构与组成。我们讨论了这些观察结果如何支持有丝分裂凝聚是一个确定性过程的模型,该过程导致给定染色体的不变折叠。结构研究也对凝聚机制施加了限制,并确定了介导凝聚所需的几种活性。在这些活性和结构信息的背景下,我们阐述了目前对顺式位点、组蛋白、拓扑异构酶II和SMC蛋白在凝聚中的作用的理解。我们通过运用目前对有丝分裂凝聚的认识来探讨从细菌到人类观察到的染色体凝聚差异,并探究这一过程与基因表达等其他过程的相关性来结束本章。