Xu Lai, Sowa Mathew E, Chen Jing, Li Xue, Gygi Steven P, Harper J Wade
Department of Pathology, Harvard Medical School, Boston, MA 02115, USA.
Mol Biol Cell. 2008 Dec;19(12):5059-71. doi: 10.1091/mbc.e08-05-0473. Epub 2008 Sep 17.
Fused Toes (FTS) is a member of a small group of inactive variant E2 ubiquitin-conjugating enzyme domain-containing proteins of unknown function. Through proteomic analysis of FTS complexes purified from human embryonic kidney 293T cells, we identified a new multiprotein complex, the FHF complex, containing FTS, members of the microtubule-binding Hook family of coiled-coil proteins (Hook1, Hook2, and Hook3), and a previously uncharacterized 107-kDa protein, FTS and Hook Interacting Protein (FHIP). FTS associated with a conserved C-terminal motif in Hook proteins in the yeast two-hybrid system and in tissue culture cells, and Hook proteins were found to form homo- and heterodimers. The approximately 500-kDa FHF complex contained all three Hook proteins, and small interfering RNA depletion experiments suggest that Hook proteins can interact interchangeably within this complex. Hook proteins as well as FTS interact with members of both the class B and class C components of the homotypic vesicular protein sorting (HOPS) complex. Depletion of FTS by RNA interference affects both the trafficking of epidermal growth factor from early-to-late endosome/lysosomes and the efficiency by which overexpression of the HOPS component Vps18 promotes clustering of lysosomal-associated membrane protein 1-positive endosome/lysosomes. These data suggest that the FTS/Hook/FHIP complex functions to promote vesicle trafficking and/or fusion via the HOPS complex.
融合趾蛋白(FTS)是一小群功能未知的非活性变体E2泛素结合酶结构域含蛋白中的一员。通过对从人胚肾293T细胞中纯化的FTS复合物进行蛋白质组学分析,我们鉴定出一种新的多蛋白复合物,即FHF复合物,它包含FTS、卷曲螺旋蛋白微管结合Hook家族成员(Hook1、Hook2和Hook3)以及一种以前未被表征的107 kDa蛋白,FTS与Hook相互作用蛋白(FHIP)。在酵母双杂交系统和组织培养细胞中,FTS与Hook蛋白中一个保守的C末端基序相关联,并且发现Hook蛋白能形成同二聚体和异二聚体。大约500 kDa的FHF复合物包含所有三种Hook蛋白,小干扰RNA缺失实验表明Hook蛋白可以在该复合物中互换相互作用。Hook蛋白以及FTS与同型囊泡蛋白分选(HOPS)复合物的B类和C类成分成员相互作用。通过RNA干扰耗尽FTS会影响表皮生长因子从早期内体/溶酶体到晚期内体/溶酶体的运输,以及HOPS成分Vps18过表达促进溶酶体相关膜蛋白1阳性内体/溶酶体聚集的效率。这些数据表明,FTS/Hook/FHIP复合物通过HOPS复合物发挥促进囊泡运输和/或融合的功能。