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Ras 鸟苷三磷酸酶激活蛋白:信号传递者与信号终止者。

ras GTPase activating protein: signal transmitter and signal terminator.

作者信息

McCormick F

机构信息

Department of Molecular Biology, Cetus Corporation, Emeryville, California 94608.

出版信息

Cell. 1989 Jan 13;56(1):5-8. doi: 10.1016/0092-8674(89)90976-8.

Abstract

Evidence that GAP is an effector of ras action can be summarized as follows: GAP interacts at a site on p21 defined genetically as the effector binding site. Regions of p21 that are nonessential for biological activity are nonessential for GAP interaction. GAP interacts with all known types of p21. (Upstream factors are expected to be specific for individual types). GAP interacts with p21 proteins (normal and mutant) in a GTP-dependent fashion. None of these constitute proof. It remains possible that GAP simply regulates p21-GTP levels, and binds to the same site as the true effector without transmitting a downstream signal. If indeed GAP mediates ras action, the question immediately arises as to the biochemical function of GAP itself. The requirement of ras proteins for membrane localization to exert their effects may be a valuable clue in the search for this function. Perhaps GAP is an enzyme (or is bound to an enzyme) that acts on membrane components in a p21-GTP-dependent manner and in doing so transmits signals to other downstream effectors. The ability of GAP to interact with many members of the ras family would allow many upstream signals to feed into this downstream pathway. Clearly, proof (or disproof) that GAP is downstream of ras is the next step toward clarification of this aspect of ras action; identification of biochemical activities associated with GAP (or the true ras effector) will, we hope, follow soon.

摘要

GAP作为ras作用效应器的证据可总结如下:GAP在p21上一个被基因定义为效应器结合位点的位点相互作用。p21中对生物活性非必需的区域对GAP相互作用也非必需。GAP与所有已知类型的p21相互作用。(上游因子预计对个别类型具有特异性)。GAP以GTP依赖的方式与p21蛋白(正常和突变型)相互作用。但这些都不构成确凿证据。仍有可能GAP只是调节p21-GTP水平,并与真正的效应器结合到同一位点而不传递下游信号。如果GAP确实介导ras作用,那么关于GAP自身的生化功能问题就立刻出现了。ras蛋白需要膜定位才能发挥其作用,这可能是寻找该功能的一个有价值的线索。也许GAP是一种酶(或与一种酶结合),它以p21-GTP依赖的方式作用于膜成分,并在此过程中将信号传递给其他下游效应器。GAP与ras家族许多成员相互作用的能力将使许多上游信号进入这条下游途径。显然,证明(或反驳)GAP在ras下游是阐明ras作用这一方面的下一步;我们希望很快能鉴定出与GAP(或真正的ras效应器)相关的生化活性。

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