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Symposium: Vps10 Family Proteins and the Retromer Complex in Aging-Related Neurodegeneration and Diabetes

机译:座谈会:衰老相关神经变性和糖尿病中的Vps10家族蛋白和Retromer复合物

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摘要

Members of the vacuolar protein sorting 10 (Vps10) family of receptors (including sortilin, SorL1, SorCS1, SorCS2, and SorCS3) play pleiotropic functions in protein trafficking and intracellular and intercellular signaling in neuronal and non-neuronal cells. Interactions have been documented between Vps10 family members and the retromer coat complex, a key component of the intracellular trafficking apparatus that sorts cargo from the early endosome to the trans-Golgi network. In recent years, genes encoding several members of the Vps10 family of proteins, as well as components of the retromer coat complex, have been implicated as genetic risk factors for sporadic and autosomal dominant forms of neurodegenerative diseases, including Alzheimer's disease, frontotemporal lobar degeneration, and Parkinson's disease, with risk for type 2 diabetes mellitus and atherosclerosis. In addition to their functions in protein trafficking, the Vps10 family proteins modulate neurotrophic signaling pathways. Sortilin can impact the intracellular response to brain-derived neurotrophic factor (BDNF) by regulating anterograde trafficking of Trk receptors to the synapse and direct control of BDNF levels, while both sortilin and SorCS2 function as cell surface receptors to mediate acute responses to proneurotrophins. This mini-review and symposium will highlight the emerging data from this rapidly growing area of research implicating the Vps10 family of receptors and the retromer in physiological intracellular trafficking signaling by neurotrophins and in the pathogenesis of neurodegeneration.
机译:液泡蛋白分选10(Vps10)受体家族的成员(包括sortilin,SorL1,SorCS1,SorCS2和SorCS3)在蛋白质运输以及神经元和非神经元细胞的细胞内和细胞间信号传导中发挥多效性功能。 Vps10家族成员与逆转录大衣复合物之间的相互作用已被记录下来,后者是细胞内运输设备的重要组成部分,该设备将货物从早期的内体分类到反高尔基网络。近年来,编码Vps10蛋白质家族几个成员的基因以及逆转录外套复合物的成分已被认为是神经退行性疾病(包括阿尔茨海默氏病,额颞叶变性,和帕金森氏病,易患2型糖尿病和动脉粥样硬化。除了其在蛋白质运输中的功能外,Vps10家族蛋白质还调节神经营养信号通路。 sortilin可以通过调节Trk受体的顺行转运来调节突触并直接控制BDNF的水平,从而影响对脑源性神经营养因子(BDNF)的细胞内反应,而sortilin和SorCS2均作为细胞表面受体发挥作用,以介导对神经营养因子的急性反应。这次小型审查和专题讨论会将重点介绍这一迅速发展的研究领域的新兴数据,这些研究涉及Vps10受体家族及其逆转录酶与神经营养蛋白的生理性细胞内运输信号传导以及神经退行性病变的发病机制有关。

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