Michaelson D, Silletti J, Murphy G, D'Eustachio P, Rush M, Philips M R
Department of Medicine, New York University School of Medicine, New York, New York 10016, USA.
J Cell Biol. 2001 Jan 8;152(1):111-26. doi: 10.1083/jcb.152.1.111.
Determinants of membrane targeting of Rho proteins were investigated in live cells with green fluorescent fusion proteins expressed with or without Rho-guanine nucleotide dissociation inhibitor (GDI)alpha. The hypervariable region determined to which membrane compartment each protein was targeted. Targeting was regulated by binding to RhoGDI alpha in the case of RhoA, Rac1, Rac2, and Cdc42hs but not RhoB or TC10. Although RhoB localized to the plasma membrane (PM), Golgi, and motile peri-Golgi vesicles, TC10 localized to PMs and endosomes. Inhibition of palmitoylation mislocalized H-Ras, RhoB, and TC10 to the endoplasmic reticulum. Although overexpressed Cdc42hs and Rac2 were observed predominantly on endomembrane, Rac1 was predominantly at the PM. RhoA was cytosolic even when expressed at levels in vast excess of RhoGDI alpha. Oncogenic Dbl stimulated translocation of green fluorescent protein (GFP)-Rac1, GFP-Cdc42hs, and GFP-RhoA to lamellipodia. RhoGDI binding to GFP-Cdc42hs was not affected by substituting farnesylation for geranylgeranylation. A palmitoylation site inserted into RhoA blocked RhoGDI alpha binding. Mutations that render RhoA, Cdc42hs, or Rac1, either constitutively active or dominant negative abrogated binding to RhoGDI alpha and redirected expression to both PMs and internal membranes. Thus, despite the common essential feature of the CAAX (prenylation, AAX tripeptide proteolysis, and carboxyl methylation) motif, the subcellular localizations of Rho GTPases, like their functions, are diverse and dynamic.
利用绿色荧光融合蛋白在活细胞中研究了Rho蛋白膜靶向的决定因素,这些融合蛋白在有或没有Rho-鸟嘌呤核苷酸解离抑制剂(GDI)α的情况下表达。高变区决定了每种蛋白靶向的膜区室。在RhoA、Rac1、Rac2和Cdc42hs的情况下,靶向作用受与RhoGDIα结合的调节,但RhoB或TC10不受此调节。尽管RhoB定位于质膜(PM)、高尔基体和运动性高尔基体周围小泡,但TC10定位于PM和内体。抑制棕榈酰化会使H-Ras、RhoB和TC10错误定位于内质网。尽管观察到过表达的Cdc42hs和Rac2主要在内膜上,但Rac1主要位于PM。即使RhoA的表达水平大大超过RhoGDIα,它仍位于胞质溶胶中。致癌性Dbl刺激绿色荧光蛋白(GFP)-Rac1、GFP-Cdc42hs和GFP-RhoA转位至片状伪足。用法尼基化取代香叶基香叶基化不会影响RhoGDI与GFP-Cdc42hs的结合。插入RhoA的棕榈酰化位点会阻断RhoGDIα的结合。使RhoA、Cdc42hs或Rac1组成型激活或显性负性的突变会消除与RhoGDIα的结合,并将表达重新导向PM和内膜。因此,尽管CAAX(异戊二烯化、AAX三肽蛋白水解和羧基甲基化)基序具有共同的基本特征,但Rho GTP酶的亚细胞定位与其功能一样,是多样且动态的。