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首页> 外文期刊>Cellular Signalling >Mulan E3 ubiquitin ligase interacts with multiple E2 conjugating enzymes and participates in mitophagy by recruiting GABARAP
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Mulan E3 ubiquitin ligase interacts with multiple E2 conjugating enzymes and participates in mitophagy by recruiting GABARAP

机译:花木兰E3泛素连接酶与多种E2结合酶相互作用并通过招募GABARAP参与线粒体

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Mulan is an E3 ubiquitin ligase embedded in the outer mitochondrial membrane (OMM) with its RING finger facing the cytoplasm and a large domain located in the intermembrane space (IMS). Mulan is known to have an important role in cell growth, cell death, and more recently in mitophagy. The mechanism of its function is poorly understood; but as an E3 ligase it is expected to interact with specific E2 ubiquitin conjugating enzymes and these complexes will bind and ubiquitinate specific substrates. The unique topology of Mulan can provide a direct link of communicating mitochondrial signals to the cytoplasm. Our studies identified four different E2 conjugating enzymes (Ube2E2, Ube2E3, Ube2G2 and Ube2L3) as specific interactors of Mulan. Each of these E2 conjugating enzymes was fused to the RING finger domain of Mulan and used in a modified yeast two-hybrid screen. Several unique interactors for each Mulan-E2 complex were isolated. One such specific interactor of Mulan-Ube2E3was the GABARAP (GABA_A receptor-associated protein). GABARAP is a member of the Atg8 family of proteins that plays amajor role in autophagy/mitophagy. The interaction of GABARAPwithMulan-Ube2E3 required an LC3-interacting region (LIR) located in the RING finger domain of Mulan as well as the presence of Ube2E3. The isolation of four different E2 conjugating enzymes, as specific partners of Mulan E3 ligase, suggests that Mulan is involved in multiple biological pathways. In addition, the interaction of GABARAP with Mulan- Ube2E3 supports the role ofMulan as an important regulator of mitophagy and provides a plausible mechanism for its function in this process.
机译:花木兰是一种E3泛素连接酶,嵌在线粒体外膜(OMM)中,其RING指面向细胞质,而大的结构域位于膜间空间(IMS)中。众所周知,花木兰在细胞生长,细胞死亡以及线粒体中起着重要作用。对其功能的机制了解甚少;但是作为一种E3连接酶,它有望与特定的E2泛素结合酶相互作用,并且这些复合物将结合并泛素化特定的底物。花木兰的独特拓扑结构可以提供将线粒体信号传递到细胞质的直接链接。我们的研究确定了四种不同的E2结合酶(Ube2E2,Ube2E3,Ube2G2和Ube2L3)是木兰的特异性相互作用物。这些E2结合酶中的每一种都与木兰的RING指结构域融合,并用于修饰的酵母双杂交筛选。每个花木兰-E2复合体的几个独特的相互作用体被隔离。花木兰-Ube2E3的一种这样的特异性相互作用物是GABARAP(GABA_A受体相关蛋白)。 GABARAP是Atg8蛋白质家族的成员,在自噬/有丝分裂中起主要作用。 GABARAP与Mulan-Ube2E3的相互作用需要位于Mulan的RING指域中的LC3相互作用区域(LIR)以及Ube2E3的存在。作为花木兰E3连接酶的特异性伴侣,四种不同的E2结合酶的分离表明,花木兰参与了多种生物途径。此外,GABARAP与Mulan-Ube2E3的相互作用支持了Mulan作为线粒体的重要调节剂的作用,并为其在此过程中的功能提供了合理的机制。

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