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首页> 外文期刊>Biochimica et biophysica acta. Biomembranes >A membrane proximal helix in the cytosolic domain of the human APP interacting protein LR11/SorLA deforms liposomes
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A membrane proximal helix in the cytosolic domain of the human APP interacting protein LR11/SorLA deforms liposomes

机译:人APP相互作用蛋白LR11 / SorLA的胞质结构域中的膜近端螺旋使脂质体变形

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Over the last decade, compelling evidence has linked the development of Alzheimer's disease (AD) to defective intracellular trafficking of the amyloid precursor protein (APP). Faulty APP trafficking results in an overproduction of A beta peptides, which is generally agreed to be the primary cause of AD-related pathogenesis. LR11 (SorLA), a type I transmembrane sorting receptor, has emerged as a key regulator of APP trafficking and processing. It directly interacts with APP and diverts it away from amyloidogenic processing. The 54-residue cytosolic domain of LR11 is essential for its proper intracellular localization and trafficking which, in turn, determines the fate of APP. Here, we have found a surprising membrane-proximal amphipathic helix in the cytosolic domain of LR11. Moreover, a peptide corresponding to this region folds into an alpha-helical structure in the presence of liposomes and transforms liposomes to small vesicles and tubule-like particles. We postulate that this amphipathic helix may contribute to the dynamic remodeling of membrane structure and facilitate LR11 intracellular transport. This article is part of a Special Issue entitled: NMR Spectroscopy for Atomistic Views of Biomembranes and Cell Surfaces. Guest Editors: Lynette Cegelski and David P.Weliky. (C) 2014 Elsevier B.V. All rights reserved.
机译:在过去的十年中,令人信服的证据已将阿尔茨海默氏病(AD)的发展与淀粉样蛋白前体蛋白(APP)的细胞内缺陷运输联系在一起。错误的APP交易会导致Aβ肽的过度生产,这通常被认为是AD相关发病机制的主要原因。 LR11(SorLA)是I型跨膜分选受体,已成为APP转运和加工的关键调节剂。它直接与APP交互,并将其从产生淀粉样蛋白的过程中转移出去。 LR11的54个残基的胞质结构域对其正确的细胞内定位和运输至关重要,这反过来又决定了APP的命运。在这里,我们在LR11的胞质域中发现了一个令人惊讶的膜近亲两亲性螺旋。此外,在脂质体存在下,对应于该区域的肽折叠成α-螺旋结构,并将脂质体转化为小囊泡和肾小管样颗粒。我们推测,这种两亲性螺旋可能有助于膜结构的动态重塑并促进LR11细胞内运输。本文是《特刊》的一部分,该刊物的标题为:NMR光谱用于生物膜和细胞表面的原子观。客座编辑:Lynette Cegelski和David P.Weliky。 (C)2014 Elsevier B.V.保留所有权利。

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