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首页> 外文期刊>The Plant Cell >The Arabidopsis Chloroplast Division Protein DYNAMIN-RELATED PROTEIN5B Also Mediates Peroxisome Division.
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The Arabidopsis Chloroplast Division Protein DYNAMIN-RELATED PROTEIN5B Also Mediates Peroxisome Division.

机译:拟南芥叶绿体分裂蛋白与动力蛋白相关的蛋白质5B也介导过氧化物酶体分裂。

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Peroxisomes are highly dynamic organelles involved in various metabolic pathways. The division of peroxisomes is regulated by factors such as the PEROXIN11 (PEX11) proteins that promote peroxisome elongation and the dynamin-related proteins (DRPs) and FISSION1 (FIS1) proteins that function together to mediate organelle fission. In Arabidopsis thaliana, DRP3A/DRP3B and FIS1A (BIGYIN)/FIS1B are two pairs of homologous proteins known to function in both peroxisomal and mitochondrial division. Here, we report that DRP5B, a DRP distantly related to the DRP3s and originally identified as a chloroplast division protein, also contributes to peroxisome division. DRP5B localizes to both peroxisomes and chloroplasts. Mutations in the DRP5B gene lead to peroxisome division defects and compromised peroxisome functions. Using coimmunoprecipitation and bimolecular fluorescence complementation assays, we further demonstrate that DRP5B can interact or form a complex with itself and with DRP3A, DRP3B, FIS1A, and most of the Arabidopsis PEX11 isoforms. Our data suggest that, in contrast with DRP3A and DRP3B, whose orthologs exist across plant, fungal, and animal kingdoms, DRP5B is a plant/algal invention to facilitate the division of their organelles (i.e., chloroplasts and peroxisomes). In addition, our results support the notion that proteins involved in the early (elongation) and late (fission) stages of peroxisome division may act cooperatively.
机译:过氧化物酶体是参与各种代谢途径的高度动态的细胞器。过氧化物酶体的分裂受诸如促进过氧化物酶体延长的PEROXIN11(PEX11)蛋白以及与动力作用相关的动力蛋白相关蛋白(DRPs)和FISSION1(FIS1)蛋白调节,这些蛋白共同作用以调节细胞器裂变。在拟南芥中,DRP3A / DRP3B和FIS1A(BIGYIN)/ FIS1B是已知在过氧化物酶体和线粒体分裂中起作用的两对同源蛋白。在这里,我们报告DRP5B,与DRP3s密切相关的DRP,最初被鉴定为叶绿体分裂蛋白,也有助于过氧化物酶体分裂。 DRP5B定位于过氧化物酶体和叶绿体。 DRP5B基因中的突变导致过氧化物酶体分裂缺陷和受损的过氧化物酶体功能。使用共免疫沉淀和双分子荧光互补测定法,我们进一步证明DRP5B可以与其自身以及与DRP3A,DRP3B,FIS1A和大多数拟南芥PEX11亚型相互作用或形成复合物。我们的数据表明,与直向同源物存在于植物,真菌和动物界的DRP3A和DRP3B相比,DRP5B是一种植物/藻类发明,旨在促进其细胞器的分裂(即叶绿体和过氧化物酶体)。此外,我们的结果支持这样的观点,即过氧化物酶体分裂的早期(延伸)和晚期(裂变)阶段所涉及的蛋白质可能协同作用。

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