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泛素通过与膜融合调节因子Vps9p中一个新的泛素结合结构域相互作用来标记蛋白质运输。

Ubiquitin signals protein trafficking via interaction with a novel ubiquitin binding domain in the membrane fusion regulator, Vps9p.

作者信息

Donaldson Kathryn M, Yin Hongwei, Gekakis Nicholas, Supek Frantisek, Joazeiro Claudio A P

机构信息

Genomics Institute of the Novartis Research Foundation, 10675 John J. Hopkins Drive, San Diego, CA 92121, USA.

出版信息

Curr Biol. 2003 Feb 4;13(3):258-62. doi: 10.1016/s0960-9822(03)00043-5.

Abstract

The conserved vacuolar protein-sorting (Vps) pathway controls the trafficking of proteins to the vacuole/lysosome. Both the internalization of ubiquitylated cargo from the plasma membrane and its sorting at the late endosome via the Vps pathway depend on ubiquitin (Ub) binding motifs present in trafficking regulators. Here we report that Ub controls yet a third step in the Vps pathway. Vps9p, which promotes endosomal and Golgi-derived vesicle fusion, binds directly to Ub via a Cue1p-homologous (CUE) domain. The CUE domain is structurally related to the Ub-associated (UBA) domain. In an assay for vacuolar delivery of a transmembrane receptor fused to Ub, a Ub mutation impairing interaction with Vps9p led to a cytoplasmic block in receptor trafficking. This block resembled that of a receptor fused to wild-type Ub but expressed in a vps9-null background. Strikingly, this trafficking defect caused by a mutant Ub was rescued by deletion of the Vps9p CUE domain, indicating that lack of the CUE domain renders Vps9p independent of Ub for activation in vivo. We thus provide evidence for biochemical and genetic interactions between Ub and a novel Ub binding domain in Vps9p. Ub plays a positive role, whereas the CUE domain plays both positive and negative roles in Vps9p function in trafficking.

摘要

保守的液泡蛋白分选(Vps)途径控制蛋白质向液泡/溶酶体的运输。从质膜内化泛素化的货物及其通过Vps途径在晚期内体中的分选都依赖于运输调节因子中存在的泛素(Ub)结合基序。在此我们报告,Ub还控制Vps途径中的第三步。促进内体和高尔基体来源的囊泡融合的Vps9p通过Cue1p同源(CUE)结构域直接与Ub结合。CUE结构域在结构上与泛素相关(UBA)结构域相关。在对与Ub融合的跨膜受体进行液泡递送的测定中,破坏与Vps9p相互作用的Ub突变导致受体运输中的细胞质阻滞。这种阻滞类似于与野生型Ub融合但在vps9缺失背景中表达的受体的阻滞。引人注目的是,由突变Ub引起的这种运输缺陷通过缺失Vps9p CUE结构域得以挽救,这表明缺乏CUE结构域使Vps9p在体内激活时不依赖于Ub。因此,我们提供了Ub与Vps9p中一个新的Ub结合结构域之间生化和遗传相互作用的证据。Ub起积极作用,而CUE结构域在Vps9p运输功能中起积极和消极作用。

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