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首页> 外文期刊>Molecular biology of the cell >The Trans-Golgi Network Accessory Protein p56 Promotes Long-Range Movement of GGA/Clathrin-containing Transport Carriers and Lysosomal Enzyme Sorting
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The Trans-Golgi Network Accessory Protein p56 Promotes Long-Range Movement of GGA/Clathrin-containing Transport Carriers and Lysosomal Enzyme Sorting

机译:反高尔基网络附件蛋白p56促进GGA /含网格蛋白的运输载体和溶酶体酶分选的远距离运动。

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摘要

The sorting of acid hydrolase precursors at the trans -Golgi network (TGN) is mediated by binding to mannose 6-phosphate receptors (MPRs) and subsequent capture of the hydrolase-MPR complexes into clathrin-coated vesicles or transport carriers (TCs) destined for delivery to endosomes. This capture depends on the function of three monomeric clathrin adaptors named GGAs. The GGAs comprise a C-terminal “ear” domain that binds a specific set of accessory proteins. Herein we show that one of these accessory proteins, p56, colocalizes and physically interacts with the three GGAs at the TGN. Moreover, overexpression of the GGAs enhances the association of p56 with the TGN, and RNA interference (RNAi)-mediated depletion of the GGAs decreases the TGN association and total levels of p56. RNAi-mediated depletion of p56 or the GGAs causes various degrees of missorting of the precursor of the acid hydrolase, cathepsin D. In the case of p56 depletion, this missorting correlates with decreased mobility of GGA-containing TCs. Transfection with an RNAi-resistant p56 construct, but not with a p56 construct lacking the GGA-ear–interacting motif, restores the mobility of the TCs. We conclude that p56 tightly cooperates with the GGAs in the sorting of cathepsin D to lysosomes, probably by enabling the movement of GGA-containing TCs.
机译:反式-高尔基体网络(TGN)上酸性水解酶前体的分选是通过与甘露糖6-磷酸受体(MPR)结合以及随后将水解酶-MPR复合物捕获到网格蛋白包被的囊泡或转运载体(TC)中来介导的传递到内体。这种捕获取决于名为GGA的三个单体网格蛋白衔接子的功能。 GGA包含一个C端“耳”域,该域与一组特定的辅助蛋白结合。本文中,我们显示了这些辅助蛋白之一p56在TGN处共定位并与三个GGA物理相互作用。此外,GGA的过表达增强了p56与TGN的结合,而RNA干扰(RNAi)介导的GGA耗竭降低了TGN关联和p56的总水平。 RNAi介导的p56或GGA的耗竭导致酸性水解酶组织蛋白酶D的前体发生各种程度的错配。在p56耗尽的情况下,这种错配与含GGA的TC迁移率降低相关。用耐RNAi的p56构建体转染,但不使用缺少与GGA耳相互作用的基序的p56构建体进行转染,可恢复TC的活动性。我们得出的结论是,p56与GGA紧密协作,可能通过使含GGA的TCs运动而将组织蛋白酶D选为溶酶体。

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