Structural determinants specific for retromer protein sorting nexin 5 in regulating subcellular retrograde membrane trafficking.

IF 2.2 4区 医学 Q3 MEDICINE, RESEARCH & EXPERIMENTAL Journal of Biomedical Research Pub Date : 2023-11-15 DOI:10.7555/JBR.37.20230112
Qing Chen, Meiheng Sun, Xu Han, Hongfei Xu, Yongjian Liu
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Abstract

The endosomal trafficking of signaling membrane proteins, such as receptors, transporters and channels, is mediated by the retromer-mediated sorting machinery, composed of a cargo-selective vacuolar protein sorting trimer and a membrane-deforming subunit of sorting nexin proteins. Recent studies have shown that the isoforms, sorting nexin 5 (SNX5) and SNX6, have played distinctive regulatory roles in retrograde membrane trafficking. However, the molecular insight determined functional differences within the proteins remains unclear. We reported that SNX5 and SNX6 had distinct binding affinity to the cargo protein vesicular monoamine transporter 2 (VMAT2). SNX5, but not SNX6, specifically interacted with VMAT2 through the Phox domain, which contains an alpha-helix binding motif. Using chimeric mutagenesis, we identified that several key residues within this domain were unique in SNX5, but not SNX6, and played an auxiliary role in its binding to VMAT2. Importantly, we generated a set of mutant SNX6, in which the corresponding key residues were mutated to those in SNX5. In addition to the gain in binding affinity to VMAT2, their overexpression functionally rescued the altered retrograde trafficking of VMAT2 induced by siRNA-mediated depletion of SNX5. These data strongly suggest that SNX5 and SNX6 have different functions in retrograde membrane trafficking, which is determined by the different structural elements within the Phox domain of two proteins. Our work provides a new information on the role of SNX5 and SNX6 in the molecular regulation of retrograde membrane trafficking and vesicular membrane targeting in monoamine neurotransmission and neurological diseases.

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调节亚细胞逆行膜运输的反转录蛋白分选连接蛋白5特异性结构决定因素。
信号膜蛋白的内体运输,如受体、转运体和通道,是由逆转录物介导的分选机制介导的,该机制由货物选择性空泡蛋白分选三聚体和分选连接蛋白的膜变形亚基组成。最近的研究表明,分类连接蛋白5 (SNX5)和SNX6在逆行膜运输中起着不同的调节作用。然而,决定蛋白质内部功能差异的分子洞察力仍不清楚。我们报道了SNX5和SNX6对货物蛋白水疱单胺转运蛋白2 (VMAT2)具有不同的结合亲和力。SNX5,而不是SNX6,通过Phox结构域特异性地与VMAT2相互作用,Phox结构域包含一个α -螺旋结合基序。通过嵌合诱变,我们发现该结构域内的几个关键残基在SNX5中是唯一的,而在SNX6中不是,并且在其与VMAT2的结合中起辅助作用。重要的是,我们生成了一组突变体SNX6,其中相应的关键残基突变为SNX5中的残基。除了增加与VMAT2的结合亲和力外,它们的过表达在功能上挽救了由sirna介导的SNX5缺失引起的VMAT2逆行运输的改变。这些数据强烈提示SNX5和SNX6在逆行膜运输中具有不同的功能,这是由两种蛋白Phox结构域内不同的结构元件决定的。我们的工作为SNX5和SNX6在单胺神经传递和神经系统疾病中逆行膜转运和囊泡膜靶向的分子调控中的作用提供了新的信息。
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来源期刊
Journal of Biomedical Research
Journal of Biomedical Research MEDICINE, RESEARCH & EXPERIMENTAL-
CiteScore
4.60
自引率
0.00%
发文量
69
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