Chloroplasts Divide by Contraction of a Bundle of Nanofilaments Consisting of Polyglucan

Yamato Yoshida(Rikkyo University), Haruko Kuroiwa(Rikkyo University), Osami Misumi(Rikkyo University), Masaki Yoshida(Rikkyo University), Mio Ohnuma(Rikkyo University), Takayuki Fujiwara(Rikkyo University), Fumi Yagisawa(Rikkyo University), Shunsuke Hirooka(Chiba University), Yuuta Imoto(Rikkyo University), Kazunobu Matsushita(Yamaguchi University), Shigeyuki Kawano(The University of Tokyo), Tsuneyoshi Kuroiwa(Rikkyo University)
Science
August 19, 2010
Cited by 102

Abstract

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.


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