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叶绿体分裂蛋白 ARC3 通过防止丝束捆绑和增强 GTPase 活性作用于 FtsZ2。

Chloroplast division protein ARC3 acts on FtsZ2 by preventing filament bundling and enhancing GTPase activity.

机构信息

Department of Biology, Texas A&M University, College Station, TX 77843, U.S.A.

Microscopy & Imaging Center, Texas A&M University, College Station, TX 77843, U.S.A.

出版信息

Biochem J. 2018 Jan 2;475(1):99-115. doi: 10.1042/BCJ20170697.

Abstract

Chloroplasts evolved from cyanobacterial endosymbiotic ancestors and their division is a complex process initiated by the assembly of cytoskeletal FtsZ (ilamentous emperature ensitive ) proteins into a ring structure at the division site (Z-ring). The cyanobacterial Z-ring positioning system (MinCDE proteins) is also conserved in chloroplasts, except that MinC was lost and replaced by the eukaryotic ARC3 (accumulation and replication of chloroplasts). Both MinC and ARC3 act as negative regulators of FtsZ assembly, but ARC3 bears little sequence similarity with MinC. Here, light scattering assays, co-sedimentation, GTPase assay and transmission electron microscopy in conjunction with single-particle analysis have been used to elucidate the structure of ARC3 and its effect on its main target in chloroplast division, FtsZ2. Analysis of FtsZ2 assembly reactions in the presence and absence of GMPCPP showed that ARC3 promotes FtsZ2 debundling and disassembly of existing filaments in a concentration-dependent manner and requires GTP hydrolysis. Three-dimensional reconstruction of ARC3 revealed an almost circular molecule in which the FtsZ-binding N-terminus and the C-terminal PARC6 (paralog of ARC6)-binding MORN (Membrane Occupation and Recognition Nexus) domain are in close proximity and suggest a model for PARC6-enabled binding of ARC3 to FtsZ2. The latter is corroborated by data.

摘要

叶绿体由蓝细菌内共生祖先进化而来,其分裂是一个复杂的过程,由细胞骨架 FtsZ(丝状温度敏感)蛋白在分裂部位(Z 环)组装成环结构引发。蓝细菌的 Z 环定位系统(MinCDE 蛋白)在叶绿体中也被保守,只是 MinC 丢失并被真核生物的 ARC3(叶绿体的积累和复制)取代。MinC 和 ARC3 都作为 FtsZ 组装的负调节剂,但 ARC3 与 MinC 的序列相似性很小。在这里,使用光散射测定、共沉淀、GTPase 测定和透射电子显微镜结合单颗粒分析来阐明 ARC3 的结构及其对其在叶绿体分裂中的主要靶标 FtsZ2 的影响。在存在和不存在 GMPCPP 的情况下分析 FtsZ2 组装反应表明,ARC3 以浓度依赖的方式促进 FtsZ2 的解聚和现有丝状体的解体,并需要 GTP 水解。ARC3 的三维重建揭示了一个几乎圆形的分子,其中 FtsZ 结合的 N 端和 C 端 PARC6(ARC6 的同源物)结合的 MORN(膜占据和识别连接)结构域非常接近,并提出了一个模型,说明 PARC6 如何使 ARC3 能够结合到 FtsZ2 上。这一模型得到了数据的证实。

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