首页> 美国卫生研究院文献>The Journal of Biological Chemistry >Structure and Membrane Binding Properties of the Endosomal Tetratricopeptide Repeat (TPR) Domain-containing Sorting Nexins SNX20 and SNX21
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Structure and Membrane Binding Properties of the Endosomal Tetratricopeptide Repeat (TPR) Domain-containing Sorting Nexins SNX20 and SNX21

机译:内体四肽重复(TPR)域包含排序神经毒素SNX20和SNX21的结构和膜结合特性。

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摘要

Sorting nexins (SNX) orchestrate membrane trafficking and signaling events required for the proper distribution of proteins within the endosomal network. Their phox homology (PX) domain acts as a phosphoinositide (PI) recognition module that targets them to specific endocytic membrane domains. The modularity of SNX proteins confers a wide variety of functions from signaling to membrane deformation and cargo binding, and many SNXs are crucial modulators of endosome dynamics and are involved in a myriad of physiological and pathological processes such as neurodegenerative diseases, cancer, and inflammation. Here, we have studied the poorly characterized SNX20 and its paralogue SNX21, which contain an N-terminal PX domain and a C-terminal PX-associated B (PXB) domain of unknown function. The two proteins share similar PI-binding properties and are recruited to early endosomal compartments by their PX domain. The crystal structure of the SNX21 PXB domain reveals a tetratricopeptide repeat (TPR)-fold, a module that typically binds short peptide motifs, with three TPR α-helical repeats. However, the C-terminal capping helix adopts a highly unusual and potentially self-inhibitory topology. SAXS solution structures of SNX20 and SNX21 show that these proteins adopt a compact globular architecture, and membrane interaction analyses indicate the presence of overlapping PI-binding sites that may regulate their intracellular localization. This study provides the first structural analysis of this poorly characterized subfamily of SNX proteins, highlighting a likely role as endosome-associated scaffolds.
机译:分选神经毒素(SNX)协调膜运输和信号传递事件,这些事件是内体网络中蛋白质正确分布的必要条件。它们的phox同源性(PX)结构域充当磷酸肌醇(PI)识别模块,将它们靶向特定的内吞膜结构域。 SNX蛋白的模块性赋予了从信号传导到膜变形和货物结合的多种功能,许多SNX是内体动力学的关键调节剂,并参与无数的生理和病理过程,例如神经退行性疾病,癌症和炎症。在这里,我们研究了特性不佳的SNX20及其旁系同源物SNX21,它们包含功能未知的N末端PX域和C末端PX相关B(PXB)域。这两种蛋白具有相似的PI结合特性,并通过其PX结构域募集到早期的内体区室中。 SNX21 PXB结构域的晶体结构揭示了四三肽重复(TPR)-折叠,该模块通常结合具有三个TPRα-螺旋重复的短肽基序。但是,C端加帽螺旋采用高度不寻常且具有潜在自我抑制性的拓扑结构。 SNX20和SNX21的SAXS解决方案结构表明,这些蛋白质采用紧凑的球形结构,并且膜相互作用分析表明,存在可能调节其细胞内定位的重叠PI结合位点。这项研究提供了此SNX蛋白特征不充分的亚家族的首次结构分析,突显了其作为内体相关支架的可能作用。

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