Okazaki Kumiko, Miyagishima Shin-ya, Wada Hajime
Department of Life Sciences, Graduate School of Arts and Sciences, University of Tokyo, Meguro-ku, Tokyo 153-8902, Japan
Center for Frontier Research, National Institute of Genetics, Mishima, Shizuoka 411-8540, Japan.
Plant Cell. 2015 Mar;27(3):663-74. doi: 10.1105/tpc.115.136234. Epub 2015 Mar 3.
Chloroplast division is performed by the constriction of envelope membranes at the division site. Although constriction of a ring-like protein complex has been shown to be involved in chloroplast division, it remains unknown how membrane lipids participate in the process. Here, we show that phosphoinositides with unknown function in envelope membranes are involved in the regulation of chloroplast division in Arabidopsis thaliana. PLASTID DIVISION1 (PDV1) and PDV2 proteins interacted specifically with phosphatidylinositol 4-phosphate (PI4P). Inhibition of phosphatidylinositol 4-kinase (PI4K) decreased the level of PI4P in chloroplasts and accelerated chloroplast division. Knockout of PI4Kβ2 expression or downregulation of PI4Kα1 expression resulted in decreased levels of PI4P in chloroplasts and increased chloroplast numbers. PI4Kα1 is the main contributor to PI4P synthesis in chloroplasts, and the effect of PI4K inhibition was largely abolished in the pdv1 mutant. Overexpression of DYNAMIN-RELATED PROTEIN5B (DRP5B), another component of the chloroplast division machinery, which is recruited to chloroplasts by PDV1 and PDV2, enhanced the effect of PI4K inhibition, whereas overexpression of PDV1 and PDV2 had additive effects. The amount of DRP5B that associated with chloroplasts increased upon PI4K inhibition. These findings suggest that PI4P is a regulator of chloroplast division in a PDV1- and DRP5B-dependent manner.
叶绿体分裂是通过在分裂位点处包膜的收缩来完成的。尽管已经表明一种环状蛋白复合物的收缩参与了叶绿体分裂,但膜脂如何参与这一过程仍不清楚。在这里,我们表明在包膜中功能未知的磷酸肌醇参与了拟南芥叶绿体分裂的调控。质体分裂蛋白1(PDV1)和质体分裂蛋白2(PDV2)与磷脂酰肌醇4-磷酸(PI4P)特异性相互作用。抑制磷脂酰肌醇4-激酶(PI4K)会降低叶绿体中PI4P的水平并加速叶绿体分裂。敲除PI4Kβ2的表达或下调PI4Kα1的表达会导致叶绿体中PI4P水平降低和叶绿体数量增加。PI4Kα1是叶绿体中PI4P合成的主要贡献者,在pdv1突变体中PI4K抑制的作用在很大程度上被消除。叶绿体分裂机制的另一个组成部分——动力相关蛋白5B(DRP5B),它被PDV1和PDV2招募到叶绿体中,其过表达增强了PI4K抑制的效果,而PDV1和PDV2的过表达具有累加效应。PI4K抑制后与叶绿体结合的DRP5B的量增加。这些发现表明PI4P是以PDV1和DRP5B依赖的方式对叶绿体分裂起调节作用。