陷阱相关蛋白和受体运输

H. Inoue, K. Tani, M. Tagaya
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引用次数: 3

摘要

在细胞表面起作用的多种受体至少部分地通过细胞膜内运输(包括内吞作用、再循环和随后的降解)受到调节。可溶性n -乙基马酰亚胺敏感因子(NSF)附着蛋白(SNAP)受体(SNAREs)是细胞膜内运输的最后一步,即运输囊泡与靶膜融合的必需分子。两个相对膜上的snare形成由四螺旋束组成的跨snare复合体,并驱动膜融合。由此产生的顺式-SNARE复合体通过NSF和SNAPs介导的过程被分解。细胞中含有SNAREs家族,同源SNAREs的相互作用至少有助于膜融合的特异性。SNARE复合体的形成和解离是由许多SNARE相关蛋白在多个步骤(包括系结、组装和拆卸)中调节的。多种分子机制,如支架,SNARE蛋白的磷酸化和泛素化,以及磷酸肌苷的产生,被用于调节。在这篇综述中,我们总结了最近在理解表皮生长因子受体、转铁蛋白受体和整合素的内吞循环和降解所需的snare相关蛋白的作用方面的进展。我们还讨论了SNAREs和SNAREs相关蛋白在受体运输中的生理和病理相关性。
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SNARE-associated proteins and receptor trafficking
A wide variety of receptors that function on the cell surface are regulated, at least in part, through intracellular membrane trafficking including endocytosis, recycling and subsequent degradation. Soluble N-ethylmaleimide sensitive factor (NSF) attachment protein (SNAP) receptors (SNAREs) are essential molecules for the final step of intracellular membrane trafficking, i.e. fusion of transport vesicles with the target membrane. SNAREs on two opposing membranes form a trans -SNARE complex consisting of a four-helical bundle and drive a membrane fusion. The resultant cis -SNARE complex is disassembled through a process mediated by NSF and SNAPs. Cells contain families of SNAREs, and the interaction of cognate SNAREs at least contributes to the specificity of membrane fusion. The SNARE complex formation and dissociation are modulated by many SNARE-associated proteins at multiple steps including tethering, assembly and disassembly. Diverse molecular mechanisms, such as scaffolding, phosphorylation and ubiquitylation of SNARE proteins, and phosphoinositide production, are utilized for the modulation. In this review, we summarize recent progress in understanding the role of SNARE-associated proteins required for the endocytic recycling and degradation of epidermal growth factor receptor, transferrin receptor and integrins. We also discuss the physiological and pathological relevance of SNAREs and SNARE-associated proteins in the receptor trafficking.
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