Chandra Mintu, Kendall Amy K, Jackson Lauren P
Department of Biological Sciences, Vanderbilt University, Nashville, TN, United States.
Center for Structural Biology, Vanderbilt University, Nashville, TN, United States.
Front Cell Dev Biol. 2021 Apr 15;9:642378. doi: 10.3389/fcell.2021.642378. eCollection 2021.
Aberrations in membrane trafficking pathways have profound effects in cellular dynamics of cellular sorting processes and can drive severe physiological outcomes. Sorting nexin 27 (SNX27) is a metazoan-specific sorting nexin protein from the PX-FERM domain family and is required for endosomal recycling of many important transmembrane receptors. Multiple studies have shown SNX27-mediated recycling requires association with retromer, one of the best-known regulators of endosomal trafficking. SNX27/retromer downregulation is strongly linked to Down's Syndrome (DS) via glutamate receptor dysfunction and to Alzheimer's Disease (AD) through increased intracellular production of amyloid peptides from amyloid precursor protein (APP) breakdown. SNX27 is further linked to addiction via its role in potassium channel trafficking, and its over-expression is linked to tumorigenesis, cancer progression, and metastasis. Thus, the correct sorting of multiple receptors by SNX27/retromer is vital for normal cellular function to prevent human diseases. The role of SNX27 in regulating cargo recycling from endosomes to the cell surface is firmly established, but how SNX27 assembles with retromer to generate tubulovesicular carriers remains elusive. Whether SNX27/retromer may be a putative therapeutic target to prevent neurodegenerative disease is now an emerging area of study. This review will provide an update on our molecular understanding of endosomal trafficking events mediated by the SNX27/retromer complex on endosomes.
膜运输途径的异常对细胞分选过程的细胞动力学有深远影响,并可导致严重的生理后果。分选连接蛋白27(SNX27)是一种来自PX-FERM结构域家族的后生动物特异性分选连接蛋白,是许多重要跨膜受体进行内体循环所必需的。多项研究表明,SNX27介导的循环需要与retromer结合,retromer是内体运输中最著名的调节因子之一。SNX27/retromer下调通过谷氨酸受体功能障碍与唐氏综合征(DS)密切相关,并通过淀粉样前体蛋白(APP)分解产生的细胞内淀粉样肽增加与阿尔茨海默病(AD)相关。SNX27还通过其在钾通道运输中的作用与成瘾有关,其过表达与肿瘤发生、癌症进展和转移有关。因此,SNX27/retromer对多种受体的正确分选对于维持正常细胞功能以预防人类疾病至关重要。SNX27在调节货物从内体循环到细胞表面的作用已得到确证,但SNX27如何与retromer组装以生成管状囊泡载体仍不清楚。SNX27/retromer是否可能是预防神经退行性疾病的潜在治疗靶点,现在是一个新兴的研究领域。本综述将更新我们对由内体上的SNX27/retromer复合物介导的内体运输事件的分子理解。