Bodine Truston J, Evangelista Michael A, Chang Huan Ting, Ayoub Christopher A, Samuel Buck S, Sucgang Richard, Zechiedrich Lynn
Interdepartmental Program in Translational Biology and Molecular Medicine, Baylor College of Medicine, Houston, TX, United States of America.
Department of Molecular Virology and Microbiology, Baylor College of Medicine, Houston, TX, United States of America.
PLoS One. 2017 Jul 11;12(7):e0180800. doi: 10.1371/journal.pone.0180800. eCollection 2017.
Escherichia coli encodes two DNA ligases, ligase A, which is essential under normal laboratory growth conditions, and ligase B, which is not. Here we report potential functions of ligase B. We found that across the entire Enterobacteriaceae family, ligase B is highly conserved in both amino acid identity and synteny with genes associated with oxidative stress. Deletion of ligB sensitized E. coli to specific DNA damaging agents and antibiotics resulted in a weak mutator phenotype, and decreased biofilm formation. Overexpression of ligB caused a dramatic extension of lag phase that eventually resumed normal growth. The ligase function of ligase B was not required to mediate the extended lag phase, as overexpression of a ligase-deficient ligB mutant also blocked growth. Overexpression of ligB during logarithmic growth caused an immediate block of cell growth and DNA replication, and death of about half of cells. These data support a potential role for ligase B in the base excision repair pathway or the mismatch repair pathway.
大肠杆菌编码两种DNA连接酶,即连接酶A(在正常实验室生长条件下是必需的)和连接酶B(非必需)。在此,我们报告连接酶B的潜在功能。我们发现,在整个肠杆菌科中,连接酶B在氨基酸同一性以及与氧化应激相关基因的共线性方面都高度保守。缺失ligB使大肠杆菌对特定的DNA损伤剂敏感,抗生素导致弱突变体表型,并减少生物膜形成。过表达ligB导致延迟期显著延长,最终恢复正常生长。介导延长的延迟期并不需要连接酶B的连接酶功能,因为连接酶缺陷的ligB突变体的过表达也会阻碍生长。在对数生长期过表达ligB会导致细胞生长和DNA复制立即受阻,约一半的细胞死亡。这些数据支持连接酶B在碱基切除修复途径或错配修复途径中具有潜在作用。