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Thematic Review Series: The Role of Phosphoinositides in Signaling and Disease: VPS34 complexes from a structural perspective

机译:专题综述系列:磷脂酰肌醇在信号传导和疾病中的作用:从结构角度看VPS34复合物

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摘要

VPS34 phosphorylates phosphatidylinositol to produce PtdIns3P and is the progenitor of the phosphoinositide 3-kinase (PI3K) family. VPS34 has a simpler domain organization than class I PI3Ks, which belies the complexity of its quaternary organization, with the enzyme always functioning within larger assemblies. PtdIns3P recruits specific recognition modules that are common in protein-sorting pathways, such as autophagy and endocytic sorting. It is best characterized in two heterotetramers, complexes I and II. Complex I is composed of VPS34, VPS15, Beclin 1, and autophagy-related gene (ATG)14L, whereas complex II replaces ATG14L with UVRAG. Because VPS34 can form a component of several distinct complexes, it enables independent regulation of various pathways that are controlled by PtdIns3P. Complexes I and II are critical for early events in autophagy and endocytic sorting, respectively. Autophagy has a complex association with cancer. In early stages, it inhibits tumorigenesis, but in later stages, it acts as a survival factor for tumors. Recently, various disease-associated somatic mutations were found in genes encoding complex I and II subunits. Lipid kinase activities of the complexes are also influenced by posttranslational modifications (PTMs). Mapping PTMs and somatic mutations on three-dimensional models of the complexes suggests mechanisms for how these affect VPS34 activity.
机译:VPS34磷酸化磷脂酰肌醇以产生PtdIns3P,并且是磷酸肌醇3激酶(PI3K)家族的祖先。 VPS34具有比I类PI3K更简单的域组织,这掩盖了其四级组织的复杂性,该酶始终在较大的程序集中起作用。 PtdIns3P募集了蛋白质分选途径中常见的特定识别模块,例如自噬和内吞分选。最好用两种异四聚体I和II来表征。复合物I由VPS34,VPS15,Beclin 1和自噬相关基因(ATG)14L组成,而复合物II用UVRAG代替ATG14L。由于VPS34可以形成几种不同复合物的组成部分,因此它可以独立调节PtdIns3P控制的各种途径。复合物I和II分别对自噬和内吞分选的早期事件至关重要。自噬与癌症有着复杂的联系。在早期,它抑制肿瘤发生,但是在后期,它充当肿瘤的生存因子。最近,在编码复杂的I和II亚基的基因中发现了各种与疾病相关的体细胞突变。复合物的脂质激酶活性也受翻译后修饰(PTM)的影响。在复合物的三维模型上绘制PTM和体细胞突变的图谱表明了这些机制如何影响VPS34活性的机制。

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