Krasniak Christopher S, Ahmad S Tariq
Department of Biology, Colby College, 5720 Mayflower Hill, Waterville, ME 04901, USA.
Department of Biology, Colby College, 5720 Mayflower Hill, Waterville, ME 04901, USA.
Brain Res. 2016 Oct 15;1649(Pt B):151-157. doi: 10.1016/j.brainres.2016.02.051. Epub 2016 Mar 10.
Charged multivesicular body protein 2B (CHMP2B) - a component of the endosomal complex required for transport-III (ESCRT-III) - is responsible for the vital membrane deformation functions in autophagy and endolysosomal trafficking. A dominant mutation in CHMP2B (CHMP2B) is associated with a subset of heritable frontotemporal dementia - frontotemporal dementia linked to chromosome 3 (FTD-3). ESCRT-III recruits Vps4, an AAA-ATPase that abscises the membrane during various cellular processes including autophagy and intraluminal vesicle formation. CHMP2B results in a C-terminus truncation removing an important Vps4 binding site as well as eliminating the normal autoinhibitory resting state of CHMP2B. CHMP2B is expressed in most cell types but seems to be especially vital for proper neuronal function. CHMP2B-mediated phenotypes include misregulation of transmembrane receptors, accumulation of multilamellar structures, abnormal lysosomal morphology, down regulation of a brain-specific micro RNA (miRNA-124), abnormal dendritic spine morphology, decrease in dendritic arborization, and cell death. Currently, transgenic-fly,-mouse, and -human cell lines are being used to better understand the diverse phenotypes and develop therapeutic approaches for the CHMP2B-induced FTD-3. This article is part of a Special Issue entitled SI:Autophagy.
带电多囊泡体蛋白2B(CHMP2B)——运输所需内体复合物III(ESCRT-III)的一个组成部分——负责自噬和内溶酶体运输中的重要膜变形功能。CHMP2B中的显性突变与遗传性额颞叶痴呆的一个亚型——与3号染色体相关的额颞叶痴呆(FTD-3)有关。ESCRT-III招募Vps4,一种AAA型ATP酶,在包括自噬和腔内囊泡形成在内的各种细胞过程中切除膜。CHMP2B导致C末端截短,去除了一个重要的Vps4结合位点,并消除了CHMP2B正常的自抑制静止状态。CHMP2B在大多数细胞类型中表达,但似乎对正常的神经元功能尤为重要。CHMP2B介导的表型包括跨膜受体的失调、多层结构的积累、溶酶体形态异常、脑特异性微小RNA(miRNA-124)的下调、树突棘形态异常、树突分支减少以及细胞死亡。目前,转基因果蝇、小鼠和人类细胞系正被用于更好地理解各种表型,并开发针对CHMP2B诱导的FTD-3的治疗方法。本文是名为“自噬”的特刊的一部分。