首页> 美国卫生研究院文献>The Journal of Biological Chemistry >Bivalent Motif-Ear Interactions Mediate the Association of the Accessory Protein Tepsin with the AP-4 Adaptor Complex
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Bivalent Motif-Ear Interactions Mediate the Association of the Accessory Protein Tepsin with the AP-4 Adaptor Complex

机译:二价基序-耳朵相互作用介导辅助蛋白胃蛋白酶与AP-4衔接子复合体的缔合

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摘要

The heterotetrameric (ϵ-β4-μ4-σ4) complex adaptor protein 4 (AP-4) is a component of a non-clathrin coat involved in protein sorting at the trans-Golgi network (TGN). Considerable interest in this complex has arisen from the recent discovery that mutations in each of its four subunits are the cause of a congenital intellectual disability and movement disorder in humans. Despite its physiological importance, the structure and function of this coat remain poorly understood. To investigate the assembly of the AP-4 coat, we dissected the determinants of interaction of AP-4 with its only known accessory protein, the ENTH/VHS-domain-containing protein tepsin. Using a variety of protein interaction assays, we found that tepsin comprises two phylogenetically conserved peptide motifs, [GS]LFXG[ML]X[LV] and S[AV]F[SA]FLN, within its C-terminal unstructured region, which interact with the C-terminal ear (or appendage) domains of the β4 and ϵ subunits of AP-4, respectively. Structure-based mutational analyses mapped the binding site for the [GS]LFXG[ML]X[LV] motif to a conserved, hydrophobic surface on the β4-ear platform fold. Both peptide-ear interactions are required for efficient association of tepsin with AP-4, and for recruitment of tepsin to the TGN. The bivalency of the interactions increases the avidity of tepsin for AP-4 and may enable cross-linking of multiple AP-4 heterotetramers, thus contributing to the assembly of the AP-4 coat. In addition to revealing critical aspects of this coat, our findings extend the paradigm of peptide-ear interactions, previously established for clathrin-AP-1/AP-2 coats, to a non-clathrin coat.
机译:异四聚体(β-β4-μ4-σ4)复合衔接蛋白4(AP-4)是非clathrin外壳的一个成分,参与了反式高尔基网络(TGN)的蛋白质分选。对这种复合物的极大兴趣来自于最近的发现,即其四个亚基中每个亚基的突变都是人类先天性智力障碍和运动障碍的原因。尽管它具有生理重要性,但对这种外套的结构和功能仍知之甚少。为了研究AP-4涂层的组装,我们剖析了AP-4与它唯一已知的辅助蛋白(包含ENTH / VHS-domain的蛋白胃蛋白酶)相互作用的决定因素。使用多种蛋白质相互作用测定法,我们发现胃蛋白酶在其C端非结构化区域内包含两个系统发育上保守的肽基序[GS] LFXG [ML] X [LV]和S [AV] F [SA] FLN。分别与AP-4的β4和γ亚基的C末端耳(或附件)结构域相互作用。基于结构的突变分析将[GS] LFXG [ML] X [LV]基序的结合位点映射到β4耳平台折叠处保守的疏水表面。胃蛋白酶与AP-4的有效结合以及胃蛋白酶向TGN的募集都需要两种肽-耳相互作用。相互作用的双价性增加了胃蛋白酶对AP-4的亲合力,并可能使多个AP-4异四聚体发生交联,从而有助于AP-4涂层的组装。除了揭示该外套的关键方面之外,我们的发现还将先前为网格蛋白-AP-1 / AP-2外套建立的肽-耳相互作用范式扩展到了非clathrin外套。

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