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SMC 和 bactofilin/PadC 支架在粘细菌(Myxococcus xanthus)的染色体分离和组织中具有不同但冗余的功能。

SMC and the bactofilin/PadC scaffold have distinct yet redundant functions in chromosome segregation and organization in Myxococcus xanthus.

机构信息

Department of Ecophysiology, Max Planck Institute for Terrestrial Microbiology, Marburg, Germany.

出版信息

Mol Microbiol. 2020 Nov;114(5):839-856. doi: 10.1111/mmi.14583. Epub 2020 Aug 15.

Abstract

In bacteria, ParABS systems and structural maintenance of chromosome (SMC) condensin-like complexes are important for chromosome segregation and organization. The rod-shaped Myxococcus xanthus cells have a unique chromosome arrangement in which a scaffold composed of the BacNOP bactofilins and PadC positions the essential ParB∙parS segregation complexes and the DNA segregation ATPase ParA in the subpolar regions. We identify the Smc and ScpAB subunits of the SMC complex in M. xanthus and demonstrate that SMC is conditionally essential, with Δsmc or ΔscpAB mutants being temperature sensitive. Inactivation of SMC caused defects in chromosome segregation and organization. Lack of the BacNOP/PadC scaffold also caused chromosome segregation defects but this scaffold is not essential for viability. Inactivation of SMC was synthetic lethal with lack of the BacNOP/PadC scaffold. Lack of SMC interfered with formation of the BacNOP/PadC scaffold while lack of this scaffold did not interfere with chromosome association by SMC. Altogether, our data support that three systems function together to enable chromosome segregation in M. xanthus. ParABS constitutes the basic and essential machinery. SMC and the BacNOP/PadC scaffold have different yet redundant roles in chromosome segregation with SMC supporting individualization of daughter chromosomes and BacNOP/PadC making the ParABS system operate more robustly.

摘要

在细菌中,ParABS 系统和结构维持染色体(SMC)凝聚素样复合物对于染色体分离和组织至关重要。杆状的粘细菌细胞具有独特的染色体排列方式,其中由 BacNOP bactofilins 和 PadC 组成的支架将必需的 ParB·parS 分离复合物和 DNA 分离 ATP 酶 ParA 定位在亚极区。我们在粘细菌中鉴定了 SMC 复合物的 Smc 和 ScpAB 亚基,并证明 SMC 是条件必需的,Δsmc 或 ΔscpAB 突变体对温度敏感。SMC 的失活导致染色体分离和组织缺陷。缺乏 BacNOP/PadC 支架也会导致染色体分离缺陷,但该支架对于生存不是必需的。SMC 的失活与 BacNOP/PadC 支架的缺失具有合成致死性。SMC 的失活干扰了 BacNOP/PadC 支架的形成,而缺乏该支架不会干扰 SMC 对染色体的结合。总之,我们的数据支持三个系统共同作用以使粘细菌中的染色体分离。ParABS 构成基本和必需的机制。SMC 和 BacNOP/PadC 支架在染色体分离中具有不同但冗余的作用,SMC 支持子染色体的个体化,而 BacNOP/PadC 使 ParABS 系统更稳健地运作。

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