Chloroplasts have retained the bacterial FtsZ for division, whereas mitochondria lack FtsZ except in some lower eukaryotes. Instead, mitochondrial division involves a dynamin-related protein, suggesting that chloroplasts retained the bacterial division system, whereas a dynamin-based system replaced the bacterial system in mitochondria during evolution. In this study, we identified a novel plant-specific group of dynamins from the primitive red alga Cyanidioschyzon merolae. Synchronization of chloroplast division and immunoblot analyses showed that the protein (CmDnm2) associates with the chloroplast only during division. Immunocytochemical analyses showed that CmDnm2 appears in cytoplasmic patches just before chloroplast division and is recruited to the cytosolic side of the chloroplast division site to form a ring in the late stage of division. The ring constricts until division is complete, after which it disappears. These results show that a dynamin-related protein also participates in chloroplast division and that its behavior differs from that of FtsZ and plastid-dividing rings that form before constriction at the site of division. Combined with the results of a recent study of mitochondrial division in Cyanidioschyzon, our findings led us to hypothesize that when first established in lower eukaryotes, mitochondria and chloroplasts divided using a very similar system that included the FtsZ ring, the plastid-dividing/mitochondrion-dividing ring, and the dynamin ring.
A plant-specific dynamin-related protein forms a ring at the chloroplast division site.
植物特有的动力蛋白相关蛋白在叶绿体分裂位点形成环状结构
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作者:Miyagishima Shin-ya, Nishida Keiji, Mori Toshiyuki, Matsuzaki Motomichi, Higashiyama Tetsuya, Kuroiwa Haruko, Kuroiwa Tsuneyoshi
| 期刊: | Plant Cell | 影响因子: | 11.600 |
| 时间: | 2003 | 起止号: | 2003 Mar;15(3):655-65 |
| doi: | 10.1105/tpc.009373 | 研究方向: | 免疫/内分泌 |
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