Johns Hopkins University School of Medicine, Baltimore, MD 21205, USA.
J Bacteriol. 2011 Jul;193(13):3175-85. doi: 10.1128/JB.00089-11. Epub 2011 Apr 29.
A Nudix enzyme from Bacillus cereus (NCBI RefSeq accession no. NP_831800) catalyzes the hydrolysis of CDP-choline to produce CMP and phosphocholine. Here, we show that in addition, the enzyme has a 3'→5' RNA exonuclease activity. The structure of the free enzyme, determined to a 1.8-Å resolution, shows that the enzyme is an asymmetric dimer. Each monomer consists of two domains, an N-terminal helical domain and a C-terminal Nudix domain. The N-terminal domain is placed relative to the C-terminal domain such as to result in an overall asymmetric arrangement with two distinct catalytic sites: one with an "enclosed" Nudix pyrophosphatase site and the other with a more open, less-defined cavity. Residues that may be important for determining the asymmetry are conserved among a group of uncharacterized Nudix enzymes from Gram-positive bacteria. Our data support a model where CDP-choline hydrolysis is catalyzed by the enclosed Nudix site and RNA exonuclease activity is catalyzed by the open site. CDP-Chase is the first identified member of a novel Nudix family in which structural asymmetry has a profound effect on the recognition of substrates.
来自蜡状芽孢杆菌的 Nudix 酶(NCBI RefSeq 登录号 NP_831800)可催化 CDP-胆碱水解生成 CMP 和磷酸胆碱。在这里,我们发现该酶还具有 3'→5' RNA 外切酶活性。游离酶的结构解析度为 1.8Å,表明该酶为非对称二聚体。每个单体由两个结构域组成,N 端螺旋结构域和 C 端 Nudix 结构域。N 端结构域相对于 C 端结构域的位置导致了整体的非对称排列,并形成了两个独特的催化位点:一个是“封闭”的 Nudix 焦磷酸酶位点,另一个是更开放、定义不明确的腔。一组来自革兰氏阳性菌的未鉴定 Nudix 酶中,可能对决定不对称性起重要作用的残基是保守的。我们的数据支持一种模型,其中 CDP-胆碱的水解由封闭的 Nudix 位点催化,而 RNA 外切酶活性由开放的位点催化。CDP-胆碱酶是第一个被鉴定的新型 Nudix 家族成员,其结构不对称对底物的识别有深远的影响。