Hashimoto S, Tsubouchi A, Mazaki Y, Sabe H
Department of Molecular Biology, Osaka Bioscience Institute, Suita, Osaka 565-0874, Japan.
J Biol Chem. 2001 Feb 23;276(8):6037-45. doi: 10.1074/jbc.M005854200. Epub 2000 Nov 28.
p21-activated kinases (PAKs) are implicated in integrin signalings, and have been proposed to associate with paxillin indirectly. We show here that paxillin can bind directly to PAK3. We examined several representative focal adhesion proteins, and found that paxillin is the sole protein that associates with PAK3. PAK3 associated with the alpha and beta isoforms of paxillin, but not with gamma. We also show that paxillin alpha associated with both the kinase-inactive and the Cdc42-activated forms of PAK3 in vivo, without affecting the activation states of the kinase. A number of different functions have been ascribed to PAKs; and PAKs can bind directly to growth factor signaling-adaptor molecule, Nck, and a guanine nucleotide exchanger, betaPIX. Our results revealed that paxillin alpha can compete with Nck and betaPIX in the binding of PAK3. Moreover, paxillin alpha can be phosphorylated by PAK3 at serine. Therefore, paxillin alpha, but not gamma, appears to be capable of linking both the kinase-inactive and activated forms of PAK3 to integrins independent of Nck and betaPIX, as Nck links PAK1 to growth factor receptors. Our results also revealed that paxillin is involved in highly complexed protein-protein interactions in integrin signaling.
p21激活激酶(PAKs)参与整合素信号传导,并且有人提出它们间接与桩蛋白相关联。我们在此表明,桩蛋白可直接与PAK3结合。我们检测了几种具有代表性的粘着斑蛋白,发现桩蛋白是唯一与PAK3相关联的蛋白。PAK3与桩蛋白的α和β亚型相关联,但不与γ亚型相关联。我们还表明,在体内桩蛋白α与PAK3的激酶失活形式和Cdc42激活形式均相关联,而不影响激酶的激活状态。PAKs具有多种不同功能;并且PAKs可直接与生长因子信号衔接分子Nck以及鸟嘌呤核苷酸交换因子βPIX结合。我们的结果显示,桩蛋白α在PAK3的结合中可与Nck和βPIX竞争。此外,桩蛋白α可在丝氨酸位点被PAK3磷酸化。因此,与Nck将PAK1与生长因子受体相连一样,桩蛋白α而非γ似乎能够将PAK3的激酶失活形式和激活形式与整合素相连,且不依赖于Nck和βPIX。我们的结果还显示,桩蛋白参与整合素信号传导中高度复杂的蛋白质-蛋白质相互作用。