生物
染色体分离
染色体
细菌圆形染色体
遗传学
DNA
DNA复制
细胞分裂
复制的起源
着丝粒
原点识别复合体
细胞生物学
细胞
真核细胞DNA复制
基因
作者
Adam S. B. Jalal,Tung B. K. Le
出处
期刊:Open Biology
[Royal Society]
日期:2020-06-01
卷期号:10 (6): 200097-200097
被引量:153
摘要
Proper chromosome segregation during cell division is essential in all domains of life. In the majority of bacterial species, faithful chromosome segregation is mediated by the tripartite ParABS system, consisting of an ATPase protein ParA, a CTPase and DNA-binding protein ParB, and a centromere-like parS site. The parS site is most often located near the origin of replication and is segregated first after chromosome replication. ParB nucleates on parS before binding to adjacent non-specific DNA to form a multimeric nucleoprotein complex. ParA interacts with ParB to drive the higher-order ParB–DNA complex, and hence the replicating chromosomes, to each daughter cell. Here, we review the various models for the formation of the ParABS complex and describe its role in segregating the origin-proximal region of the chromosome. Additionally, we discuss outstanding questions and challenges in understanding bacterial chromosome segregation.
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