Gao Xiang-Dong, Caviston Juliane P, Tcheperegine Serguei E, Bi Erfei
Department of Cell and Developmental Biology, University of Pennsylvania, Philadelphia, PA 19104-6058, USA.
Mol Biol Cell. 2004 Sep;15(9):3977-85. doi: 10.1091/mbc.e04-01-0079. Epub 2004 Jun 23.
Rho-family GTPases Cdc42p and Rho1p play critical roles in the budding process of the yeast Saccharomyces cerevisiae. However, it is not clear how the functions of these GTPases are coordinated temporally and spatially during this process. Based on its ability to suppress cdc42-Ts mutants when overexpressed, a novel gene PXL1 was identified. Pxl1p resembles mammalian paxillin, which is involved in integrating various signaling events at focal adhesion. Both proteins share amino acid sequence homology and structural organization. When expressed in yeast, chicken paxillin localizes to the sites of polarized growth as Pxl1p does. In addition, the LIM domains in both proteins are the primary determinant for targeting the proteins to the cortical sites in their native cells. These data strongly suggest that Pxl1p is the "ancient paxillin" in yeast. Deletion of PXL1 does not produce any obvious phenotype. However, Pxl1p directly binds to Rho1p-GDP in vitro, and inhibits the growth of rho1-2 and rho1-3 mutants in a dosage-dependent manner. The opposite effects of overexpressed Pxl1p on cdc42 and rho1 mutants suggest that the functions of Cdc42p and Rho1p may be coordinately regulated during budding and that Pxl1p may be involved in this coordination.
Rho家族GTP酶Cdc42p和Rho1p在酿酒酵母的出芽过程中发挥着关键作用。然而,目前尚不清楚这些GTP酶的功能在这一过程中是如何在时间和空间上进行协调的。基于其在过表达时抑制cdc42 - Ts突变体的能力,一个新基因PXL1被鉴定出来。Pxl1p类似于哺乳动物的桩蛋白,后者参与在粘着斑整合各种信号事件。这两种蛋白质都具有氨基酸序列同源性和结构组织。当在酵母中表达时,鸡桩蛋白与Pxl1p一样定位于极化生长位点。此外,这两种蛋白质中的LIM结构域是将蛋白质靶向其天然细胞中皮质位点的主要决定因素。这些数据强烈表明Pxl1p是酵母中的“古老桩蛋白”。PXL1的缺失不会产生任何明显的表型。然而,Pxl1p在体外直接与Rho1p - GDP结合,并以剂量依赖的方式抑制rho1 - 2和rho1 - 3突变体的生长。过表达的Pxl1p对cdc42和rho1突变体产生相反的影响,这表明Cdc42p和Rho1p的功能可能在出芽过程中受到协调调节,并且Pxl1p可能参与了这种协调。