Gall W E, Higginbotham M A, Chen C, Ingram M F, Cyr D M, Graham T R
Department of Biological Sciences, Vanderbilt University, Nashville, Tennessee 37235-1634, USA.
Curr Biol. 2000 Nov 2;10(21):1349-58. doi: 10.1016/s0960-9822(00)00771-5.
In eukaryotic cells, clathrin-coated vesicles transport specific cargo from the plasma membrane and trans-Golgi network to the endosomal system. Removal of the clathrin coat in vitro requires the uncoating ATPase Hsc70 and its DnaJ cofactor auxilin. To date, a requirement for auxilin and Hsc70 in clathrin function in vivo has not been demonstrated.
The Saccharomyces cerevisiae SWA2 gene, previously identified in a synthetic lethal screen with arf1, was cloned and found to encode a protein with a carboxy-terminal DnaJ domain which is homologous to that of auxilin. Like auxilin, Swa2p has a clathrin-binding domain and is able to stimulate the ATPase activity of Hsc70. The swa2-1 allele recovered from the original screen carries a point mutation in its tetratricopeptide repeat (TPR) domain, a motif not found in auxilin but known in other proteins to mediate interaction with heat-shock proteins. Swa2p fractionates in the cytosol and appears to be heavily phosphorylated. Disruption of SWA2 causes slow growth and several phenotypes that are very similar to those exhibited by clathrin mutants. Furthermore, the swa2Delta mutant exhibits a significant increase in membrane- associated or -assembled clathrin relative to a wild-type strain.
These results indicate that Swa2p is a clathrin-binding protein required for normal clathrin function in vivo. They suggest that Swa2p is the yeast ortholog of auxilin and has a role in disassembling clathrin, not only in uncoating clathrin-coated vesicles but perhaps in preventing unproductive clathrin assembly in vivo.
在真核细胞中,网格蛋白包被的囊泡将特定货物从质膜和反式高尔基体网络运输到内体系统。在体外去除网格蛋白包被需要去包被ATP酶Hsc70及其DnaJ辅因子auxilin。迄今为止,尚未证明auxilin和Hsc70在体内网格蛋白功能中的必要性。
酿酒酵母SWA2基因先前在与arf1的合成致死筛选中被鉴定出来,被克隆并发现编码一种具有羧基末端DnaJ结构域的蛋白质,该结构域与auxilin的结构域同源。与auxilin一样,Swa2p具有网格蛋白结合结构域,并且能够刺激Hsc70的ATP酶活性。从原始筛选中获得的swa2-1等位基因在其四肽重复(TPR)结构域中携带一个点突变,该基序在auxilin中未发现,但在其他蛋白质中已知可介导与热休克蛋白的相互作用。Swa2p在细胞质中分级分离,并且似乎高度磷酸化。SWA2的破坏导致生长缓慢和几种与网格蛋白突变体表现出的非常相似的表型。此外,相对于野生型菌株,swa2Δ突变体在膜相关或组装的网格蛋白中表现出显著增加。
这些结果表明Swa2p是体内正常网格蛋白功能所需的网格蛋白结合蛋白。它们表明Swa2p是auxilin的酵母直系同源物,并且在拆卸网格蛋白中起作用,不仅在去除网格蛋白包被的囊泡中,而且可能在防止体内非生产性网格蛋白组装中起作用。