Department of Material and Life Science, Graduate School of Engineering, Osaka University, 2-1 Yamadaoka, Suita, Osaka 565-0871, Japan.
FEBS Lett. 2013 May 2;587(9):1418-23. doi: 10.1016/j.febslet.2013.03.020. Epub 2013 Mar 20.
The crystal structure of metagenome-derived LC9-RNase H1 was determined. The structure-based mutational analyses indicated that the active site motif of LC9-RNase H1 is altered from DEDD to DEDN. In this motif, the location of the second glutamate residue is moved from αA-helix to β1-strand immediately next to the first aspartate residue, as in the active site of RNase H2. However, the structure and enzymatic properties of LC9-RNase H1 highly resemble those of RNase H1, instead of RNase H2. We propose that LC9-RNase H1 represents bacterial RNases H1 with an atypical DEDN active site motif, which are evolutionarily distinct from those with a typical DEDD active site motif.
元基因组衍生的 LC9-RNase H1 的晶体结构被确定。基于结构的突变分析表明,LC9-RNase H1 的活性位点基序从 DEDD 改变为 DEDN。在这个基序中,第二个谷氨酸残基的位置从αA-螺旋移动到紧邻第一个天冬氨酸残基的β1-链,就像 RNase H2 的活性位点一样。然而,LC9-RNase H1 的结构和酶学特性与 RNase H1 非常相似,而不是 RNase H2。我们提出 LC9-RNase H1 代表具有非典型 DEDN 活性位点基序的细菌 RNase H1,它们在进化上与具有典型 DEDD 活性位点基序的 RNase H1 不同。