四聚体
超分子化学
DNA
生物
质粒
噬菌体
噬菌体展示
二聚体
连接器
计算生物学
化学
生物化学
噬菌体
结晶学
大肠杆菌
基因
酶
肽
晶体结构
有机化学
计算机科学
操作系统
作者
Xiaoyuan Yang,Zhangfei Shen,Jiale Xie,Jacelyn Greenwald,Ila Marathe,Qingpeng Lin,Wen Jun Xie,Vicki H. Wysocki,Tian‐Min Fu
标识
DOI:10.1038/s41594-024-01283-w
摘要
As one of the most prevalent anti-phage defense systems in prokaryotes, Gabija consists of a Gabija protein A (GajA) and a Gabija protein B (GajB). The assembly and function of the Gabija system remain unclear. Here we present cryo-EM structures of Bacillus cereus GajA and GajAB complex, revealing tetrameric and octameric assemblies, respectively. In the center of the complex, GajA assembles into a tetramer, which recruits two sets of GajB dimer at opposite sides of the complex, resulting in a 4:4 GajAB supramolecular complex for anti-phage defense. Further biochemical analysis showed that GajA alone is sufficient to cut double-stranded DNA and plasmid DNA, which can be inhibited by ATP. Unexpectedly, the GajAB displays enhanced activity for plasmid DNA, suggesting a role of substrate selection by GajB. Together, our study defines a framework for understanding anti-phage immune defense by the GajAB complex. The Gabija system constitutes one of the most prevalent anti-phage defense systems and is composed of GajA and GajB. Here, using cryo-EM and biochemistry, the authors show that GajA and GajB form a supramolecular complex with a stoichiometry of 4:4 to promote anti-phage defense.
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