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The Arabidopsis Dynamin-Like Proteins ADL1C and ADL1E Play a Critical Role in Mitochondrial Morphogenesis

机译:拟南芥动态蛋白样蛋白ADL1C和ADL1E在线粒体形态发生中起关键作用

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摘要

Dynamin-related proteins are high molecular weight GTP binding proteins and have been implicated in various biological processes. Here, we report the functional characterization of two dynamin homologs in Arabidopsis, Arabidopsis dynamin-like 1C (ADL1C) and Arabidopsis dynamin-like 1E (ADL1E). ADL1C and ADL1E show a high degree of amino acid sequence similarity with members of the dynamin family. However, both proteins lack the C-terminal Pro-rich domain and the pleckstrin homology domain. Expression of the dominant-negative mutant ADL1C[K48E] in protoplasts obtained from leaf cells caused abnormal mitochondrial elongation. Also, a T-DNA insertion mutation at the ADL1E gene caused abnormal mitochondrial elongation that was rescued by the transient expression of ADL1C and ADL1E in protoplasts. In immunohistochemistry and in vivo targeting experiments in Arabidopsis protoplasts, ADL1C and ADL1E appeared as numerous speckles and the two proteins colocalized. These speckles were partially colocalized with F1-ATPase-γ:RFP, a mitochondrial marker, and ADL2b localized at the tip of mitochondria. These results suggest that ADL1C and ADL1E may play a critical role in mitochondrial fission in plant cells.
机译:动力蛋白相关蛋白是高分子量GTP结合蛋白,并已涉及各种生物学过程。在这里,我们报告在拟南芥中的两个dynamin同源物的功能表征,拟南芥的dynamin样1C(ADL1C)和拟南芥的dynamin样1E(ADL1E)。 ADL1C和ADL1E与动力组成员显示高度的氨基酸序列相似性。但是,这两种蛋白都缺乏C端富含Pro的结构域和pleckstrin同源结构域。从叶细胞获得的原生质体中显性负突变ADL1C [K48E]的表达引起线粒体异常伸长。同样,在ADL1E基因上的T-DNA插入突变引起异常的线粒体延伸,这种异常可以通过原生质体中ADL1C和ADL1E的瞬时表达来挽救。在拟南芥原生质体的免疫组织化学和体内靶向实验中,ADL1C和ADL1E出现为许多斑点,并且这两种蛋白质共定位。这些斑点与线粒体标记物F1-ATPase-γ:RFP部分共定位,而ADL2b位于线粒体尖端。这些结果表明,ADL1C和ADL1E可能在植物细胞的线粒体裂变中起关键作用。

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