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Gβγ复合体对激酶级联支架蛋白Ste5的膜募集是酵母信息素反应途径激活的基础。

Membrane recruitment of the kinase cascade scaffold protein Ste5 by the Gbetagamma complex underlies activation of the yeast pheromone response pathway.

作者信息

Pryciak P M, Huntress F A

机构信息

Department of Molecular Genetics and Microbiology, University of Massachusetts Medical Center, Worcester Foundation Campus, Shrewsbury, Massachusetts 01545, USA.

出版信息

Genes Dev. 1998 Sep 1;12(17):2684-97. doi: 10.1101/gad.12.17.2684.

Abstract

In the Saccharomyces cerevisiae pheromone response pathway, the Gbetagamma complex activates downstream responses by an unknown mechanism involving a MAP kinase cascade, the PAK-like kinase Ste20, and a Rho family GTPase, Cdc42. Here we show that Gbetagamma must remain membrane-associated after release from Galpha to activate the downstream pathway. We also show that pheromone stimulates translocation of the kinase cascade scaffold protein Ste5 to the cell surface. This recruitment requires Gbetagamma function and the Gbetagamma-binding domain of Ste5, but not the kinases downstream of Gbetagamma, suggesting that it is mediated by Gbetagamma itself. Furthermore, this event has functional significance, as artificial targeting of Ste5 to the plasma membrane, but not intracellular membranes, activates the pathway in the absence of pheromone or Gbetagamma. Remarkably, although independent of Gbetagamma, activation by membrane-targeted Ste5 requires Ste20, Cdc42, and Cdc24, indicating that their participation in this pathway does not require them to be activated by Gbetagamma. Thus, membrane recruitment of Ste5 defines a molecular activity for Gbetagamma. Moreover, our results suggest that this event promotes kinase cascade activation by delivering the Ste5-associated kinases to the cell surface kinase Ste20, whose function may depend on Cdc42 and Cdc24.

摘要

在酿酒酵母的信息素反应途径中,Gβγ复合物通过一种未知机制激活下游反应,该机制涉及丝裂原活化蛋白激酶(MAP激酶)级联反应、PAK样激酶Ste20和Rho家族GTP酶Cdc42。我们在此表明,Gβγ从Gα释放后必须保持与膜的结合,才能激活下游途径。我们还表明,信息素刺激激酶级联支架蛋白Ste5向细胞表面转位。这种募集需要Gβγ的功能以及Ste5的Gβγ结合结构域,但不需要Gβγ下游的激酶,这表明它是由Gβγ本身介导的。此外,这一事件具有功能意义,因为在没有信息素或Gβγ的情况下,将Ste5人工靶向质膜而非内膜可激活该途径。值得注意的是,尽管与Gβγ无关,但膜靶向的Ste5激活需要Ste20、Cdc42和Cdc24,这表明它们参与该途径并不需要被Gβγ激活。因此,Ste5的膜募集定义了Gβγ的一种分子活性。此外,我们的结果表明,这一事件通过将与Ste5相关的激酶传递到细胞表面激酶Ste20来促进激酶级联反应的激活,Ste20的功能可能依赖于Cdc42和Cdc24。

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