Liu T F, Kandala G, Setaluri V
Department of Dermatology, Wake Forest University School of Medicine, Winston-Salem, North Carolina 27157, USA.
J Biol Chem. 2001 Sep 21;276(38):35768-77. doi: 10.1074/jbc.M103585200. Epub 2001 Jul 5.
Tyrosinase and tyrosinase-related proteins (TRPs) are a family of melanosomal membrane proteins involved in mammalian pigmentation. Whereas the melanogenic functions of TRPs are localized in their amino-terminal domains that reside within the lumen of melanosomes, the sorting and targeting of these proteins to melanosomes is mediated by signals in their cytoplasmic domains. To identify proteins that interact with the cytoplasmic tail of gp75 (TRP-1), the most abundant melanosomal membrane protein, we performed yeast two-hybrid screening of a melanocyte cDNA library. Here, we show that the cytoplasmic domain of gp75 interacts with a PDZ domain-containing protein. The gp75-interacting protein is identical to GIPC, an RGS (regulator of G protein signaling)/GAIP-interacting protein, and to SEMCAP-1, a transmembrane semaphorin-binding protein. Carboxyl-terminal amino acid residues, Ser-Val-Val, of gp75 are necessary and sufficient for interaction of gp75 with the single PDZ domain in GIPC. Although endogenous and transfected GIPCs bind efficiently to transiently expressed gp75, only a small amount of GIPC is found associated with gp75 at steady state. Using a strategy to selectively synchronize the biosynthesis of endogenous gp75, we demonstrate that only newly synthesized gp75 associates with GIPC, primarily in the juxtanuclear Golgi region. Our data suggest that GIPC/SEMCAP-1 plays a role in biosynthetic sorting of proteins, specifically gp75, to melanosomes.
酪氨酸酶和酪氨酸酶相关蛋白(TRPs)是一类参与哺乳动物色素沉着的黑素体膜蛋白家族。TRPs的黑素生成功能定位于其位于黑素体腔内的氨基末端结构域,而这些蛋白向黑素体的分选和靶向是由其细胞质结构域中的信号介导的。为了鉴定与gp75(TRP - 1)的细胞质尾巴相互作用的蛋白,gp75是最丰富的黑素体膜蛋白,我们对黑素细胞cDNA文库进行了酵母双杂交筛选。在此,我们表明gp75的细胞质结构域与一种含PDZ结构域的蛋白相互作用。与gp75相互作用的蛋白与GIPC相同,GIPC是一种RGS(G蛋白信号调节剂)/GAIP相互作用蛋白,也与SEMCAP - 1相同,SEMCAP - 1是一种跨膜信号素结合蛋白。gp75的羧基末端氨基酸残基Ser - Val - Val对于gp75与GIPC中的单个PDZ结构域相互作用是必需且充分的。尽管内源性和转染的GIPCs能有效地与瞬时表达的gp75结合,但在稳态时仅发现少量GIPC与gp75相关联。使用一种选择性同步内源性gp75生物合成的策略,我们证明只有新合成的gp75与GIPC结合,主要在近核高尔基体区域。我们的数据表明GIPC/SEMCAP - 1在蛋白质,特别是gp75向黑素体的生物合成分选中起作用。