Laboratory of Cell Biology, Department of Life Science, College of Science, Research Information Center for Extremophile, Rikkyo University, Toshima, Tokyo 171-8501, Japan.
Science. 2010 Aug 20;329(5994):949-53. doi: 10.1126/science.1190791.
In chloroplast division, the plastid-dividing (PD) ring is a main structure of the PD machinery and is a universal structure in the plant kingdom. However, the components and formation of the PD ring have been enigmatic. By proteomic analysis of PD machineries isolated from Cyanidioschyzon merolae, we identified the glycosyltransferase protein plastid-dividing ring 1 (PDR1), which constructs the PD ring and is widely conserved from red alga to land plants. Electron microscopy showed that the PDR1 protein forms a ring with carbohydrates at the chloroplast-division site. Fluorometric saccharide ingredient analysis of purified PD ring filaments showed that only glucose was included, and down-regulation of PDR1 impaired chloroplast division. Thus, the chloroplasts are divided by the PD ring, which is a bundle of PDR1-mediated polyglucan filaments.
在叶绿体分裂中,质体分裂(PD)环是 PD 机器的主要结构,也是植物王国的普遍结构。然而,PD 环的组成和形成一直是个谜。通过对来自 Cyanidioschyzon merolae 的 PD 机器的蛋白质组学分析,我们鉴定出了糖基转移酶蛋白质体分裂环 1(PDR1),它构建了 PD 环,并且从红藻到陆地植物都广泛保守。电子显微镜显示,PDR1 蛋白在叶绿体分裂部位形成带有碳水化合物的环。对纯化的 PD 环丝的荧光糖成分分析表明,只有葡萄糖被包含在内,并且 PDR1 的下调会损害叶绿体的分裂。因此,叶绿体是由 PD 环分裂的,PD 环是由 PDR1 介导的多葡聚糖丝束组成的。