National Laboratory of Biomacromelecules, Chinese Academy of Sciences (CAS) Center for Excellence in Biomacromolecules, Institute of Biophysics, Chinese Academy of Sciences, Beijing 100101, China.
CAS Key Laboratory of Infection and Immunity, CAS Center for Excellence in Biomacromolecules, Institute of Biophysics, Chinese Academy of Sciences, Beijing 100101, China
Proc Natl Acad Sci U S A. 2017 Oct 17;114(42):11151-11156. doi: 10.1073/pnas.1711754114. Epub 2017 Oct 2.
Type I restriction-modification (R-M) systems are multisubunit enzymes with separate DNA-recognition (S), methylation (M), and restriction (R) subunits. Despite extensive studies spanning five decades, the detailed molecular mechanisms underlying subunit assembly and conformational transition are still unclear due to the lack of high-resolution structural information. Here, we report the atomic structure of a type I MTase complex (2M+1S) bound to DNA and cofactor S-adenosyl methionine in the "open" form. The intermolecular interactions between M and S subunits are mediated by a four-helix bundle motif, which also determines the specificity of the interaction. Structural comparison between open and previously reported low-resolution "closed" structures identifies the huge conformational changes within the MTase complex. Furthermore, biochemical results show that R subunits prefer to load onto the closed form MTase. Based on our results, we proposed an updated model for the complex assembly. The work reported here provides guidelines for future applications in molecular biology.
I 型限制修饰(R-M)系统是具有独立的 DNA 识别(S)、甲基化(M)和限制(R)亚基的多亚基酶。尽管经过了五十年的广泛研究,但由于缺乏高分辨率结构信息,亚基组装和构象转变的详细分子机制仍不清楚。在这里,我们报告了一种 I 型 MTase 复合物(2M+1S)与 DNA 和辅因子 S-腺苷甲硫氨酸在“开放”形式下结合的原子结构。M 和 S 亚基之间的分子间相互作用由一个四螺旋束基序介导,该基序还决定了相互作用的特异性。开放和先前报道的低分辨率“封闭”结构之间的结构比较确定了 MTase 复合物内的巨大构象变化。此外,生化结果表明 R 亚基更喜欢加载到封闭形式的 MTase 上。基于我们的结果,我们提出了一个复合物组装的更新模型。这里报道的工作为未来在分子生物学中的应用提供了指导。