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Kex2p 胞质尾直接与酵母 Gga2p 的 VHS 结构域结合,有助于 TGN 到前液泡区室的运输,并受磷酸化调节。

Direct binding of the Kex2p cytosolic tail to the VHS domain of yeast Gga2p facilitates TGN to prevacuolar compartment transport and is regulated by phosphorylation.

机构信息

Department of Biological Chemistry, University of Michigan, Ann Arbor, MI 48109, USA.

出版信息

Mol Biol Cell. 2013 Feb;24(4):495-509. doi: 10.1091/mbc.E12-11-0843.

Abstract

Human Golgi-localized, γ-ear-containing, ADP-ribosylation factor-binding proteins (Ggas) bind directly to acidic dileucine sorting motifs in the cytosolic tails (C-tails) of intracellular receptors. Despite evidence for a role in recruiting ubiquitinated cargo, it remains unclear whether yeast Ggas also function by binding peptide-sorting signals directly. Two-hybrid analysis shows that the Gga1p and Gga2p Vps27, Hrs, Stam (VHS) domains both bind a site in the Kex2p C-tail and that the Gga2p VHS domain binds a site in the Vps10p C-tail. Binding requires deletion of an apparently autoinhibitory sequence in the Gga2p hinge. Ser(780) in the Kex2p C-tail is crucial for binding: an Ala substitution blocks but an Asp substitution permits binding. Biochemical assays using purified Gga2p VHS-GGA and TOM1 (GAT) and glutathione S-transferase-Kex2p C-tail fusions show that Gga2p binds directly to the Kex2p C-tail, with relative affinities Asp(780) > Ser(780) > Ala(780). Affinity-purified antibody against a peptide containing phospho-Ser-(780) recognizes wild-type Kex2p but not S(780)A Kex2p, showing that Ser(780) is phosphorylated in vivo; phosphorylation of Ser(780) is up-regulated by cell wall-damaging drugs. Finally, mutation of Ser(780) alters trafficking of Kex2p both in vivo and in cell-free trans-Golgi network (TGN)-prevacuolar compartment (PVC) transport. Thus yeast Gga adaptors facilitate TGN-PVC transport by direct binding of noncanonical phosphoregulated Gga-binding sites in cargo molecules.

摘要

人高尔基定位、γ-耳含、ADP-核糖基化因子结合蛋白 (Ggas) 直接结合细胞内受体胞质尾 (C 尾) 中的酸性双亮氨酸分拣基序。尽管有证据表明其在招募泛素化货物方面的作用,但酵母 Ggas 是否也通过直接结合肽分拣信号发挥作用仍不清楚。双杂交分析表明,Gga1p 和 Gga2p Vps27、Hrs、Stam (VHS) 结构域均结合 Kex2p C 尾中的一个位点,而 Gga2p VHS 结构域结合 Vps10p C 尾中的一个位点。结合需要在 Gga2p 铰链中删除一个明显的自动抑制序列。Kex2p C 尾中的 Ser(780) 对于结合至关重要:Ala 取代会阻止结合,但 Asp 取代会允许结合。使用纯化的 Gga2p VHS-GGA 和 TOM1 (GAT) 和谷胱甘肽 S-转移酶-Kex2p C 尾融合物进行的生化测定表明,Gga2p 直接结合 Kex2p C 尾,相对亲和力 Asp(780)>Ser(780)>Ala(780)。针对含有磷酸化-Ser-(780)的肽的亲和纯化抗体识别野生型 Kex2p,但不识别 S(780)A Kex2p,表明 Ser(780)在体内被磷酸化;细胞壁破坏药物上调 Ser(780)的磷酸化。最后,Ser(780)的突变改变了 Kex2p 的体内和无细胞转高尔基网络 (TGN)-前液泡区室 (PVC) 运输。因此,酵母 Gga 衔接蛋白通过直接结合货物分子中非典型磷酸化调节的 Gga 结合位点,促进 TGN-PVC 运输。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1099/3571872/7bd03f1fe4a8/495fig1.jpg

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