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与羟甲基胞苷一磷酸结合的N-糖苷酶MilB的结构揭示了其精氨酸23特异性识别底物并控制其进入。

Structure of the N-glycosidase MilB in complex with hydroxymethyl CMP reveals its Arg23 specifically recognizes the substrate and controls its entry.

作者信息

Zhao Gong, Wu Geng, Zhang Yan, Liu Guang, Han Tiesheng, Deng Zixin, He Xinyi

机构信息

State Key Laboratory of Microbial Metabolism and School of Life Sciences and Biotechnology, Shanghai Jiao Tong University, 1954 Huashan Road, Shanghai 200030, China.

State Key Laboratory of Microbial Metabolism and School of Life Sciences and Biotechnology, Shanghai Jiao Tong University, 1954 Huashan Road, Shanghai 200030, China

出版信息

Nucleic Acids Res. 2014 Jul;42(12):8115-24. doi: 10.1093/nar/gku486. Epub 2014 Jun 11.

Abstract

5-Hydroxymethylcytosine (5hmC) is present in T-even phage and mammalian DNA as well as some nucleoside antibiotics, including mildiomycin and bacimethrin, during whose synthesis 5hmC is produced by the hydrolysis of 5-hydroxymethyl cytidine 5'-monophosphate (hmCMP) by an N-glycosidase MilB. Recently, the MilB-CMP complex structure revealed its substrate specificity for CMP over dCMP. However, hmCMP instead of CMP is the preferred substrate for MilB as supported by that its KM for CMP is ∼27-fold higher than that for hmCMP. Here, we determined the crystal structures of MilB and its catalytically inactive E103A mutant in complex with hmCMP. In the structure of the complex, Phe22 and Arg23 are positioned in a cage-like active site resembling the binding pocket for the flipped 5-methylcytosine (5mC) in eukaryotic 5mC-binding proteins. Van der Waals interaction between the benzene ring of Phe22 and the pyrimidine ring of hmCMP stabilizes its binding. Remarkably, upon hmCMP binding, the guanidinium group of Arg23 was bent ∼65° toward hmCMP to recognize its 5-hydroxymethyl group, inducing semi-closure of the cage-like pocket. Mutagenesis studies of Arg23 and bioinformatics analysis demonstrate that the positively charged Arg/Lys at this site is critical for the specific recognition of the 5-hydroxymethyl group of hmCMP.

摘要

5-羟甲基胞嘧啶(5hmC)存在于T偶数噬菌体和哺乳动物DNA以及一些核苷抗生素中,包括米德霉素和杆菌菊酯,在其合成过程中,5hmC由N-糖苷酶MilB水解5-羟甲基胞苷5'-单磷酸(hmCMP)产生。最近,MilB-CMP复合物结构揭示了其对CMP比对dCMP的底物特异性。然而,hmCMP而非CMP是MilB的首选底物,因为其对CMP的米氏常数(KM)比对hmCMP的高约27倍。在此,我们确定了MilB及其催化无活性的E103A突变体与hmCMP复合物的晶体结构。在复合物结构中,苯丙氨酸22(Phe22)和精氨酸23(Arg23)位于一个笼状活性位点,类似于真核生物5-甲基胞嘧啶(5mC)结合蛋白中翻转的5mC的结合口袋。Phe22的苯环与hmCMP的嘧啶环之间的范德华相互作用稳定了其结合。值得注意的是,在hmCMP结合后,Arg23的胍基向hmCMP弯曲约65°以识别其5-羟甲基基团,导致笼状口袋半封闭。对Arg23的诱变研究和生物信息学分析表明,该位点带正电荷的Arg/Lys对hmCMP的5-羟甲基基团的特异性识别至关重要。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e8b0/4081090/6a63c1d94fd4/gku486fig1.jpg

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