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首页> 外文期刊>Archives of Biochemistry and Biophysics >Oligomerization of plant FtsZ1 and FtsZ2 plastid division proteins
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Oligomerization of plant FtsZ1 and FtsZ2 plastid division proteins

机译:植物FtsZ1和FtsZ2质体分裂蛋白的低聚

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FtsZ was identified in bacteria as the first protein to localize mid-cell prior to division and homologs have been found in many plant species. Bacterial studies demonstrated that FtsZ forms a ring structure that is dynamically exchanged with a soluble pool of FtsZ. Our previous work established that Arabidopsis FtsZ1 and FtsZ2-1 are capable of in vitro self-assembly into two distinct filament types, termed type-I and type-II and noted the presence of filament precursor molecules which prompted this investigation. Using a combination of electron microscopy, gel chromatography and native PAGE revealed that (i) prior to FtsZ assembly initiation the pool consists solely of dimers and (ii) during assembly of the Arabidopsis FtsZ type-II filaments the most common intermediate between the dimer and filament state is a tetramer. Three-dimensional reconstructions of the observed dimer and tetramer suggest these oligomeric forms may represent consecutive steps in type-II filament assembly and a mechanism is proposed, which is expanded to include FtsZ assembly into type-I filaments. Finally, the results permit a discussion of the oligomeric nature of the soluble pool in plants.
机译:FtsZ在细菌中被鉴定为是分裂前定位中细胞的第一个蛋白质,并且在许多植物物种中都发现了同源物。细菌研究表明,FtsZ形成了与FtsZ可溶性库动态交换的环结构。我们以前的工作建立了拟南芥FtsZ1和FtsZ2-1能够在体外自组装成两种不同的长丝类型,分别称为I型和II型,并指出存在长丝前驱体分子促使了这项研究。使用电子显微镜,凝胶色谱和天然PAGE的组合显示,(i)在FtsZ组装开始之前,该池仅由二聚体组成;(ii)在拟南芥FtsZ II型长丝组装期间,二聚体和长丝状态是四聚体。观察到的二聚体和四聚体的三维重建表明,这些寡聚形式可能代表II型长丝组装中的连续步骤,并提出了一种机制,将其机制扩展为将FtsZ组装成I型长丝。最后,结果允许讨论植物中可溶性库的低聚性质。

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