培养细胞中钙或egf诱导的DNA合成起始过程中的细胞骨架事件。蛋白磷酸化在转化过程中的作用和线索。

N Marceau, S H Swierenga
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引用次数: 10

摘要

细胞骨架事件与钙和生长因子(如EGF)刺激下的生长调节之间的可能关系可以总结如下:在静止细胞中,钙和血清生长因子(如EGF)在DNA合成的起始过程中存在复杂的相互作用。这意味着在细胞表面传递的外部信号和导致染色体复制并最终导致细胞分裂的连续细胞内事件之间的许多过程必须以可复制的方式协调。现在很明显,由于其作为细胞质的动态整合者的可能作用,细胞骨架可以代表导致复制的事件的协调者。钙(及其细胞内受体钙调素)和cAMP(可通过相反的机制起作用)广泛参与细胞骨架完整性的控制。不同的蛋白激酶被钙/钙调素、EGF和cAMP激活,作为复制前反应的各个方面,许多磷酸化的底物是细胞骨架蛋白。新出现的图景似乎包括这些蛋白激酶直接参与导致DNA合成起始的级联调控事件。因此,细胞骨架在将增生信号从外部受体位置传递到细胞核中起直接作用。根据最近的数据显示,癌基因的产物是蛋白激酶或与细胞蛋白激酶密切相互作用的蛋白质,因此提出了一种方法,通过这种方法,肿瘤细胞可以绕过正常的调节途径。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Cytoskeletal events during calcium- or EGF-induced initiation of DNA synthesis in cultured cells. Role of protein phosphorylation and clues in the transformation process.

The possible relationship between cytoskeletal events and growth regulation in response to stimulation by calcium and by growth factors such as EGF can be summarized as follows: An elaborate interaction exists between calcium and serum growth factors, such as EGF, in the initiation of DNA synthesis in quiescent cells. This implies that many processes between the external signals delivered at the cell surface and the sequential intracellular events that lead to chromosomal replication, and ultimately to cell division, must be coordinated in a reproducible manner. It is now apparent that because of its possible role as a dynamic integrator of the cytoplasm, the cytoskeleton could represent the coordinator of the events that lead to replication. Calcium (with its intracellular acceptor, calmodulin) and cAMP (which can act by opposing mechanisms) are extensively involved in the control of the integrity of the cytoskeleton. Distinct protein kinases are activated by calcium/calmodulin, EGF, and cAMP as aspects of the prereplicative response, and many of the substrates for phosphorylation are cytoskeletal proteins. The emerging picture seems to include a direct involvement of these protein kinases in the cascade of regulatory events that leads to the initiation of DNA synthesis. Thus, the cytoskeleton has a direct role in the transmission of proliferative signals from external receptor sites to the nucleus. A means by which neoplastic cells can bypass the normal regulatory pathways is proposed in the light of recent data showing that the product of oncogenes are protein kinases or proteins that intimately interact with cellular protein kinases.

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