Division of Biology, Indian Institute of Science Education and Research, Pune, 411008, India.
Science for Life Laboratory, Department of Biochemistry and Biophysics, Stockholm University, 17165, Solna, Sweden.
Nat Commun. 2019 Jul 11;10(1):3058. doi: 10.1038/s41467-019-11084-1.
The AAA+ GTPase McrB powers DNA cleavage by the endonuclease McrC. The GTPase itself is activated by McrC. The architecture of the GTPase and nuclease complex, and the mechanism of their activation remained unknown. Here, we report a 3.6 Å structure of a GTPase-active and DNA-binding deficient construct of McrBC. Two hexameric rings of McrB are bridged by McrC dimer. McrC interacts asymmetrically with McrB protomers and inserts a stalk into the pore of the ring, reminiscent of the γ subunit complexed to αβ of F-ATPase. Activation of the GTPase involves conformational changes of residues essential for hydrolysis. Three consecutive nucleotide-binding pockets are occupied by the GTP analogue 5'-guanylyl imidodiphosphate and the next three by GDP, which is suggestive of sequential GTP hydrolysis.
AAA+ GTPase McrB 为内切核酸酶 McrC 的 DNA 切割提供动力。该 GTPase 本身被 McrC 激活。GTPase 和核酸酶复合物的结构及其激活机制尚不清楚。在这里,我们报告了 McrBC 的 GTP 酶活性和 DNA 结合缺陷构建体的 3.6Å 结构。McrC 二聚体桥接两个六聚体环的 McrB。McrC 与 McrB 原聚体不对称相互作用,并将一个柄插入环的孔中,使人联想到与 F-ATPase 的 αβ 复合的 γ 亚基。GTPase 的激活涉及水解必需残基的构象变化。三个连续的核苷酸结合口袋被 GTP 类似物 5'-鸟苷酰基亚氨基二磷酸占据,接下来的三个由 GDP 占据,这表明 GTP 水解是连续的。