Höfer Katharina, Li Sisi, Abele Florian, Frindert Jens, Schlotthauer Jasmin, Grawenhoff Julia, Du Jiamu, Patel Dinshaw J, Jäschke Andres
Institute of Pharmacy and Molecular Biotechnology, Heidelberg University, Heidelberg, Germany.
Structural Biology Program, Memorial Sloan Kettering Cancer Center, New York, New York, USA.
Nat Chem Biol. 2016 Sep;12(9):730-4. doi: 10.1038/nchembio.2132. Epub 2016 Jul 18.
RNA capping and decapping are thought to be distinctive features of eukaryotes. The redox cofactor NAD was recently discovered to be attached to small regulatory RNAs in bacteria in a cap-like manner, and Nudix hydrolase NudC was found to act as a NAD-decapping enzyme in vitro and in vivo. Here, crystal structures of Escherichia coli NudC in complex with substrate NAD and with cleavage product NMN reveal the catalytic residues lining the binding pocket and principles underlying molecular recognition of substrate and product. Biochemical mutation analysis identifies the conserved Nudix motif as the catalytic center of the enzyme, which needs to be homodimeric, as the catalytic pocket is composed of amino acids from both monomers. NudC is single-strand specific and has a purine preference for the 5'-terminal nucleotide. The enzyme strongly prefers NAD-linked RNA (NAD-RNA) over NAD and binds to a diverse set of cellular RNAs in an unspecific manner.
RNA加帽和去帽被认为是真核生物的独特特征。氧化还原辅因子NAD最近被发现以帽状方式附着在细菌中的小调节RNA上,并且发现Nudix水解酶NudC在体外和体内作为NAD去帽酶起作用。在这里,大肠杆菌NudC与底物NAD和裂解产物NMN复合物的晶体结构揭示了结合口袋内衬的催化残基以及底物和产物分子识别的潜在原理。生化突变分析确定保守的Nudix基序为酶的催化中心,该中心需要是同二聚体,因为催化口袋由来自两个单体的氨基酸组成。NudC具有单链特异性,对5'-末端核苷酸具有嘌呤偏好。该酶强烈偏好NAD连接的RNA(NAD-RNA)而非NAD,并以非特异性方式结合多种细胞RNA。