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Structural Mechanism for Cargo Recognition by the Retromer Complex

机译:后跟系统识别货物的结构机制

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Retromer is a multi-protein complex that recycles transmembrane cargo from endosomes to the trans-Golgi network and the plasma membrane. Defects in retromer impair various cellular processes and underlie some forms of Alzheimer's disease and Parkinson's disease. Although retromer was discovered over 15 years ago, the mechanisms for cargo recognition and recruitment to endosomes have remained elusive. Here, we present an X-ray crystallographic analysis of a four-component complex comprising the VPS26 and VPS35 subunits of retromer, the sorting nexin SNX3, and a recycl ing signal from the divalent cation transporter DMT1-II. This analysis identifies a binding site for canonical recycling signals at the interface between VPS26 and SNX3. In addition, the structure highlights a network of cooperative interactions among the VPS subunits, SNX3, and cargo that couple signal-recognition to membrane recruitment.
机译:Retromer是一种多蛋白复合物,可将跨膜货物从内体循环到反式高尔基体和质膜。逆转录酶的缺陷损害各种细胞过程,并成为某种形式的阿尔茨海默氏病和帕金森氏病的基础。尽管逆转录酶是在15年前发现的,但用于货物识别和募集内体的机制仍然难以捉摸。在这里,我们介绍了一种四组分复合物的X射线晶体学分析,该复合物包含逆转录子的VPS26和VPS35亚基,分选nexin SNX3和来自二价阳离子转运蛋白DMT1-II的再循环信号。该分析在VPS26和SNX3之间的接口处确定了规范回收信号的结合位点。此外,该结构突出显示了VPS子单元,SNX3和货物之间的协同相互作用网络,这些信号将信号识别与膜募集相结合。

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