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Arabidopsis ARC6 coordinates the division machineries of the inner and outer chloroplast membranes through interaction with PDV2 in the intermembrane space

机译:拟南芥ARC6通过与膜间空间中的PDV2相互作用来协调内部和外部叶绿体膜的分裂机制

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Chloroplasts arose from a free-living cyanobacterial endosymbiont and divide by binary fission. Division involves the assembly and constriction of the endosymbiont-derived, tubulin-like FtsZ ring on the stromal surface of the inner envelope membrane and the host-derived, dynamin-like ARC5 ring on the cytosolic surface of the outer envelope membrane. Despite the identification of many proteins required for plastid division, the factors coordinating the internal and external division machineries are unknown. Here, we provide evidence that this coordination is mediated in Arabidopsis thaliana by an interaction between ARC6, an FtsZ assembly factor spanning the inner envelope membrane, and PDV2, an ARC5 recruitment factor spanning the outer envelope membrane. ARC6 and PDV2 interact via their C-terminal domains in the intermembrane space, consistent with their in vivo topologies. ARC6 acts upstream of PDV2 to localize PDV2 (and hence ARC5) to the division site. We present a model whereby ARC6 relays information on stromal FtsZ ring positioning through PDV2 to the chloroplast surface to specify the site of ARC5 recruitment. Because orthologs of ARC6 occur in land plants, green algae, and cyanobacteria but PDV2 occurs only in land plants, the connection between ARC6 and PDV2 represents the evolution of a plant-specific adaptation to coordinate the assembly and activity of the endosymbiont- and host-derived plastid division components.
机译:叶绿体由自由生存的蓝细菌内共生产生,并通过二元裂变分裂。分裂涉及内鞘膜的内表面上由内共生体衍生的,微管蛋白样FtsZ环的组装和收缩,以及在外包膜的胞质表面上由宿主衍生的,动力蛋白样的ARC5环的组装和收缩。尽管已鉴定出质体分裂所需的许多蛋白质,但协调内部和外部分裂机制的因素尚不清楚。在这里,我们提供的证据表明,拟南芥中的这种协调作用是通过跨内包膜的FtsZ组装因子ARC6和跨外包膜的ARC5募集因子PDV2之间的相互作用介导的。 ARC6和PDV2通过它们在膜间空间中的C末端结构域相互作用,这与其体内拓扑结构一致。 ARC6在PDV2的上游起作用,以将PDV2(因此也将ARC5)本地化到分割站点。我们提出了一个模型,其中ARC6通过PDV2将有关FtsZ环的定位信息传递到叶绿体表面,以指定ARC5募集的位置。由于ARC6的直系同源物发生在陆地植物,绿藻和蓝细菌中,而PDV2仅发生在陆地植物中,因此ARC6和PDV2之间的联系代表了植物特异性适应的进化,以协调内共生体和寄主的组装和活性。衍生的质体分裂成分。

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