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一种类发动蛋白(ADL2b)而非FtsZ参与了拟南芥线粒体的分裂过程。

A dynamin-like protein (ADL2b), rather than FtsZ, is involved in Arabidopsis mitochondrial division.

作者信息

Arimura Shin-ichi, Tsutsumi Nobuhiro

机构信息

Laboratory of Plant Molecular Genetics, Graduate School of Agricultural and Life Sciences, University of Tokyo, 1-1-1 Yayoi, Bunkyo-ku, Tokyo 113-8657, Japan.

出版信息

Proc Natl Acad Sci U S A. 2002 Apr 16;99(8):5727-31. doi: 10.1073/pnas.082663299.

Abstract

Recently, the FtsZ protein, which is known as a key component in bacterial cell division, was reported to be involved in mitochondrial division in algae. In yeast and animals, however, mitochondrial fission depends on the dynamin-like proteins Dnm1p and Drp1, respectively, whereas in green plants, no potential mitochondrial division genes have been identified. BLAST searches of the nuclear and mitochondrial genome sequences of Arabidopsis thaliana did not find any obvious homologue of the alpha-proteobacterial-type ftsZ genes. To determine whether mitochondrial division of higher plants depends on a dynamin-like protein, we cloned a cDNA for ADL2b, an Arabidopsis homologue of Dnm1p, and tested its subcellular localization and its dominant-negative effect on mitochondrial division. The fusion protein of green fluorescent protein and ADL2b was observed as punctate structures localized at the tips and at the constriction sites of mitochondria in live plant cells. Cells expressing dominant-negative mutant ADL2b proteins (K56A and T77F) showed a significant fusion, aggregation, and/or tubulation of mitochondria. We propose that mitochondrial division in higher plants is conducted by dynamin-like proteins similar to ADL2b in Arabidopsis. The evolutional points of loss of mitochondrial FtsZ and the functional acquisition of dynamin-like proteins in mitochondrial division are discussed.

摘要

最近,据报道,作为细菌细胞分裂关键成分的FtsZ蛋白参与了藻类的线粒体分裂。然而,在酵母和动物中,线粒体分裂分别依赖于类发动蛋白Dnm1p和Drp1,而在绿色植物中,尚未鉴定出潜在的线粒体分裂基因。对拟南芥核基因组和线粒体基因组序列进行BLAST搜索,未发现α-变形菌型ftsZ基因的任何明显同源物。为了确定高等植物的线粒体分裂是否依赖于类发动蛋白,我们克隆了ADL2b的cDNA,它是拟南芥中Dnm1p的同源物,并测试了其亚细胞定位及其对线粒体分裂的显性负效应。在活植物细胞中,绿色荧光蛋白与ADL2b的融合蛋白表现为点状结构,定位于线粒体的尖端和缢缩部位。表达显性负突变ADL2b蛋白(K56A和T77F)的细胞显示出线粒体明显的融合、聚集和/或成管状。我们提出,高等植物的线粒体分裂是由类似于拟南芥中ADL2b的类发动蛋白进行的。文中还讨论了线粒体FtsZ缺失的进化点以及线粒体分裂中类发动蛋白功能的获得。

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