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首页> 外文期刊>Oncogene >WIPI-1|[alpha]| (WIPI49), a member of the novel 7-bladed WIPI protein family, is aberrantly expressed in human cancer and is linked to starvation-induced autophagy
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WIPI-1|[alpha]| (WIPI49), a member of the novel 7-bladed WIPI protein family, is aberrantly expressed in human cancer and is linked to starvation-induced autophagy

机译:WIPI-1 |α| (WIPI49)是新型7叶片WIPI蛋白家族的成员,在人类癌症中异常表达,并与饥饿诱导的自噬有关

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摘要

WD-repeat proteins are regulatory beta-propeller platforms that enable the assembly of multiprotein complexes. Here, we report the functional and bioinformatic analysis of human WD-repeat protein Interacting with PhosphoInosides (WIPI)-1 (WIPI49/Atg18), a member of a novel WD-repeat protein family with autophagic capacity in Saccharomyces cerevisiae and Caenorhabditis elegans, recently identified as phospholipid-binding effectors. Our phylogenetic analysis divides the WIPI protein family into two paralogous groups that fold into 7-bladed beta-propellers. Structural modeling identified two evolutionary conserved interaction sites in WIPI propellers, one of which may bind phospholipids. Human WIPI-1 has LXXLL signature motifs for nuclear receptor interactions and binds androgen and estrogen receptors in vitro. Strikingly, human WIPI genes were found aberrantly expressed in a variety of matched tumor tissues including kidney, pancreatic and skin cancer. We found that endogenous hWIPI-1 protein colocalizes in part with the autophagosomal marker LC3 at punctate cytoplasmic structures in human melanoma cells. In addition, hWIPI-1 accumulated in large vesicular and cup-shaped structures in the cytoplasm when autophagy was induced by amino-acid deprivation. These cytoplasmic formations were blocked by wortmannin, a classic inhibitor of PI-3 kinase-mediated autophagy. Our data suggest that WIPI proteins share an evolutionary conserved function in autophagy and that autophagic capacity may be compromised in human cancers.
机译:WD重复蛋白是监管性的β螺旋桨平台,可实现多蛋白复合物的组装。在这里,我们报告人类WD重复蛋白与磷酸肌苷(WIPI)-1(WIPI49 / Atg18)相互作用的功能和生物信息学分析,该蛋白是酿酒酵母和秀丽隐杆线虫自噬能力的新型WD重复蛋白家族的成员。被鉴定为磷脂结合效应物。我们的系统发育分析将WIPI蛋白家族分为两个旁系,它们折叠成7叶片的β螺旋桨。结构建模确定了WIPI螺旋桨中两个进化保守的相互作用位点,其中一个可以结合磷脂。人类WIPI-1具有用于核受体相互作用的LXXLL标志基序,并在体外与雄激素和雌激素受体结合。令人惊讶的是,发现人类WIPI基因在各种匹配的肿瘤组织中异常表达,包括肾脏,胰腺癌和皮肤癌。我们发现,内源性hWIPI-1蛋白与自噬体标记物LC3部分共定位在人黑素瘤细胞的点状胞质结构中。此外,hWIPI-1在自噬被氨基酸剥夺诱导时,会在细胞质的大泡状和杯状结构中积累。这些胞质形成被渥曼青霉素(一种由PI-3激酶介导的自噬的经典抑制剂)阻断。我们的数据表明,WIPI蛋白在自噬中具有进化的保守功能,在人类癌症中自噬能力可能受到损害。

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