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A Phosphotyrosine Switch for Cargo Sequestration at Clathrin-coated Buds

机译:磷酪氨酸开关用于螯合包覆芽的货物螯合

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摘要

The AP-2 clathrin adaptor complex oversees endocytic cargo selection in two parallel but independent manners. First, by physically engaging peptide-based endocytic sorting signals, a subset of clathrin-dependent transmembrane cargo is directly collected into assembling buds. Synchronously, by interacting with an assortment of clathrin-associated sorting proteins (CLASPs) that independently select different integral membrane cargo for inclusion within the incipient bud, AP-2 handles additional cargo capture indirectly. The distal platform subdomain of the AP-2 β2 subunit appendage is a privileged CLASP-binding surface that recognizes a cognate, short α-helical interaction motif. This signal, found in the CLASPs β-arrestin and the autosomal recessive hypercholesterolemia (ARH) protein, docks into an elongated groove on the β2 appendage platform. Tyr-888 is a critical constituent of this spatially confined β2 appendage contact interface and is phosphorylated in numerous high-throughput proteomic studies. We find that a phosphomimetic Y888E substitution does not interfere with incorporation of expressed β2-YFP subunit into AP-2 or alter AP-2 deposition at surface clathrin-coated structures. The Y888E mutation does not affect interactions involving the sandwich subdomain of the β2 appendage, indicating that the mutated appendage is folded and operational. However, the Y888E, but not Y888F, switch selectively uncouples interactions with ARH and β-arrestin. Phyogenetic conservation of Tyr-888 suggests that this residue can reversibly control occupancy of the β2 platform-binding site and, hence, cargo sorting.
机译:AP-2网格蛋白衔接子复合体以两种平行但独立的方式监督胞吞货物的选择。首先,通过物理参与基于肽的胞吞分选信号,将网格蛋白依赖性跨膜货物的子集直接收集到组装芽中。与此同步,AP-2通过与各种网格蛋白相关分选蛋白(CLASP)相互作用,从而独立地选择不同的完整膜货物以包含在初始芽中,AP-2间接处理了额外的货物捕获。 AP-2β2亚基附件的远端平台亚结构域是特权CLASP结合表面,可识别同源的短α-螺旋相互作用基序。在CLASPs-arrestin和常染色体隐性隐性高胆固醇血症(ARH)蛋白中发现的该信号停靠在β2附肢平台上的细长凹槽中。 Tyr-888是这种空间受限的β2附肢接触界面的关键组成部分,在许多高通量蛋白质组学研究中被磷酸化。我们发现,模拟磷酸化的Y888E取代不会干扰表达的β2-YFP亚基掺入AP-2或改变表面网格蛋白涂层结构上的AP-2沉积。 Y888E突变不影响涉及β2附肢夹心亚结构域的相互作用,表明该突变的附肢是折叠的且可操作。但是,Y888E(而不是Y888F)开关选择性地解除与ARH和β-arrestin的相互作用。 Tyr-888的系统发育保守性表明,该残基可以可逆地控制β2平台结合位点的占据,从而可以控制货物分选。

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