Xie Qingyun, Liu Jing, Shan Yanke, Wang Shouyu, Liu Fei
MOE Joint International Research Laboratory of Animal Health and Food Safety, Jiangsu Engineering Laboratory of Animal Immunology, Single Molecule Nanometry Laboratory (Sinmolab), College of Veterinary Medicine , Nanjing Agricultural University , Nanjing , Jiangsu 210095 , China.
Computational Optics Laboratory, School of Science , Jiangnan University , Wuxi , Jiangsu 214122 , China.
Biochemistry. 2018 Dec 4;57(48):6662-6668. doi: 10.1021/acs.biochem.8b01025. Epub 2018 Nov 15.
RNA helicase A (RHA) as a member of the DExH/D-box subgroup of helicase superfamily II is involved in virtually all aspects of RNA metabolism. It exhibits robust RNA helicase activity in vitro. However, little is known about the molecular and physical determinants for RHA substrate recognition and RHA translocation along the nucleic acids. Here, our nondenaturing polyacrylamide gel electrophoresis (PAGE)-based unwinding assays of chemical and structural modified substrates indicate that RHA translocates efficiently along the 3' overhang of RNA, but not DNA, with a requirement of covalent continuity. Ribose-phosphate backbone lesions on both strands of the nucleic acids, especially on the 3' overhang of the loading strand, affect RHA unwinding significantly. Furthermore, RHA requires RNA on the 3' overhang which directly or indirectly connects with the duplex region to mediate productive unwinding. Collectively, these findings propose a basic mechanism of the substrate determinants for RHA backbone tracking during duplex unwinding.
RNA解旋酶A(RHA)作为解旋酶超家族II的DExH/D-box亚组的成员,几乎参与RNA代谢的各个方面。它在体外表现出强大的RNA解旋酶活性。然而,关于RHA底物识别以及RHA沿核酸转运的分子和物理决定因素知之甚少。在这里,我们基于非变性聚丙烯酰胺凝胶电泳(PAGE)对化学和结构修饰底物的解旋分析表明,RHA能够沿着RNA的3'突出端高效转运,但不能沿着DNA转运,且需要共价连续性。核酸两条链上的核糖磷酸主链损伤,尤其是加载链3'突出端上的损伤,会显著影响RHA的解旋。此外,RHA需要3'突出端上直接或间接与双链区域相连的RNA来介导有效的解旋。总的来说,这些发现提出了双链解旋过程中RHA主链追踪底物决定因素的基本机制。