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质体分裂控制:PDV 蛋白调节 DRP5B 动力蛋白活性。

Plastid division control: the PDV proteins regulate DRP5B dynamin activity.

机构信息

Centre for Organelle Research, University of Stavanger, Stavanger, Norway.

出版信息

Plant Mol Biol. 2013 Jun;82(3):255-66. doi: 10.1007/s11103-013-0059-7. Epub 2013 Apr 18.

Abstract

Chloroplast division represents a fundamental but complex biological process involving remnants of the ancestral bacterial division machinery and proteins of eukaryotic origin. Moreover, the chloroplast division machinery is divided into stromal and cytosolic sub machineries, which coordinate and control their activities to ensure appropriate division initiation and progression. Dynamin related protein 5B (DRP5B) and plastid division protein 1 and 2 (PDV1 and PDV2) are all plant-derived proteins and represent components of the cytosolic division machinery, where DRP5B is thought to exert constrictional force during division. However, the direct relationship between PDV1, PDV2 and DRP5B, and moreover how DRP5B is regulated during plastid constriction remains unclear. In this study we show that PDV1 and PDV2 can interact with themselves and with each other through their cytosolic domains. We demonstrate that DRP5B interacts with itself and with the cytosolic region of PDV1 and that the two functional isoforms of DRP5B have highly overlapping functions. We further show that DRP5B harbors GTPase activity and moreover that PDV1 and PDV2 inhibits DRP5B-mediated GTP hydrolysis in a ratio dependent manner. Our data suggest that the PDV proteins contribute to the regulation of DRP5B activity thereby enforcing control over the division process during early constriction.

摘要

叶绿体分裂代表一个基本但复杂的生物学过程,涉及到祖先细菌分裂机制的残留物和真核起源的蛋白质。此外,叶绿体分裂机制分为基质和细胞质亚机制,它们协调和控制其活性,以确保适当的分裂起始和进程。动力相关蛋白 5B(DRP5B)和质体分裂蛋白 1 和 2(PDV1 和 PDV2)都是植物衍生的蛋白质,代表细胞质分裂机制的组成部分,其中 DRP5B 被认为在分裂过程中施加收缩力。然而,PDV1、PDV2 和 DRP5B 之间的直接关系,以及 DRP5B 在质体收缩过程中的调控方式仍不清楚。在这项研究中,我们表明 PDV1 和 PDV2 可以通过它们的细胞质结构域相互作用。我们证明了 DRP5B 可以与自身以及 PDV1 的细胞质区域相互作用,并且 DRP5B 的两种功能同工型具有高度重叠的功能。我们进一步表明,DRP5B 具有 GTPase 活性,而且 PDV1 和 PDV2 以依赖比例的方式抑制 DRP5B 介导的 GTP 水解。我们的数据表明,PDV 蛋白有助于 DRP5B 活性的调节,从而在早期收缩过程中对分裂过程施加控制。

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