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Fusion of Small Peroxisomal Vesicles in Vitro Reconstructs an Early Step in the in Vivo Multistep Peroxisome Assembly Pathway of Yarrowia lipolytica

机译:小过氧化物酶体囊泡的体外融合重建解脂耶氏酵母体内多步过氧化物酶体组装途径的早期步骤。

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摘要

We have identified and purified six subforms of peroxisomes, designated P1 to P6, from the yeast, Yarrowia lipolytica. An analysis of trafficking of peroxisomal proteins in vivo suggests the existence of a multistep peroxisome assembly pathway in Y. lipolytica. This pathway operates by conversion of peroxisomal subforms in the direction P1, P2→P3→P4→P5→P6 and involves the import of various peroxisomal proteins into distinct vesicular intermediates. We have also reconstituted in vitro the fusion of the earliest intermediates in the pathway, small peroxisomal vesicles P1 and P2. Their fusion leads to the formation of a larger and more dense peroxisomal vesicle, P3. Fusion of P1 and P2 in vitro requires cytosol and ATP hydrolysis and is inhibited by antibodies to two membrane-associated ATPases of the AAA family, Pex1p and Pex6p. We provide evidence that the fusion in vitro of P1 and P2 peroxisomes reconstructs an actual early step in the peroxisome assembly pathway operating in vivo in Y. lipolytica. udud
机译:我们从酵母解脂耶氏酵母中鉴定并纯化了过氧化物酶体的六个亚型,命名为P1至P6。对体内过氧化物酶体蛋白运输的分析表明,解脂耶氏酵母中存在多步过氧化物酶体组装途径。该途径通过在P1,P2→P3→P4→P5→P6方向上过氧化物酶体亚型的转化而起作用,并且涉及将各种过氧化物酶体蛋白导入不同的水泡中间体。我们还重建了该途径中最早的中间体,小过氧化物酶体小泡P1和P2的融合体。它们的融合导致形成更大和更密的过氧化物酶体囊泡P3。 P1和P2的体外融合需要胞浆和ATP水解,并受到针对AAA家族的两个膜相关ATPase Pex1p和Pex6p的抗体的抑制。我们提供的证据表明,P1和P2过氧化物酶体的体外融合重建了解脂耶氏酵母在体内运行的过氧化物酶体装配途径中的实际早期步骤。 ud ud

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