核层组装与拆卸动力学。

Jos L V Broers, Frans C S Ramaekers
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摘要

关于纤层蛋白动力学可以得出什么结论?a.虽然核层形成了一个紧密的蛋白质网络,但单个的层成员,如层蛋白C,只是部分地与层结合。b.在大多数细胞中存在着一个突出的核质层蛋白库,它与核内结构(DNA?组蛋白吗?以动态的方式复制和/或转录复合体?c.在有丝分裂过程中,层板在核膜的初始重组中不起关键作用。然而,它们对于有丝分裂后细胞核的正确功能是重要的。尽管20多年来人们在不同水平上对核层蛋白进行了研究,但仍有许多问题没有得到解答。我们才刚刚开始了解它们在几个细胞过程中的关键作用。一些仍然存在的重要问题是:a.核内层蛋白病灶的功能。这些天然核结构(核通道/核小管)是否在复制和转录中发挥作用?核质膜层的功能这些分子是由于与染色体或核蛋白的亲和力而暂时与核内结构结合,还是与这些分子存在功能相互作用?c.层合蛋白分子加入核膜组织的程度。这些分子是否在保持核膜完整和细胞核功能方面起着关键作用,或者它们只是核膜的许多支持成分之一?
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Dynamics of nuclear lamina assembly and disassembly.

What can be concluded about lamin dynamics? a. While the nuclear lamina forms a tight network of proteins, individual lamina members, such as the lamin C proteins, are only partially bound to the lamina. b. A prominent pool of nucleoplasmic lamins exists in most cells, which interacts with intranuclear structures (DNA? Histones? Replication and/or transcription complexes?) in a dynamic fashion. c. During mitosis lamins do not play a key role in the initial reformation of the nuclear envelope. However, they are important for the correct functioning of the nucleus immediately after mitosis. Many questions remain unanswered, although nuclear lamins have been studied at different levels for over 20 years. We have only just begun to understand their crucial role in several cellular processes. Some of the important questions that still remain are: a. The function of intranuclear lamin foci. Are these native nuclear structures (nuclear channels/tubules) and do they play a role in replication and transcription? b. The function of the nucleoplasmic veil of lamins. Are these molecules only temporarily bound to intranuclear structures as a result of affinity to chromosomes or nuclear proteins, or is there a functional interaction with these molecules? c. The extent to which lamin molecules add to nuclear membrane organisation. Do these molecules play a key role in keeping the membrane intact and the nucleus functional, or are they only one of many supportive component of the nuclear membrane?

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