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细菌环腺苷酸-腺苷酸-鸟苷酸合成酶的晶体结构与功能意义。

Crystal structure and functional implication of a bacterial cyclic AMP-AMP-GMP synthetase.

机构信息

Institute of Biological Chemistry, Academia Sinica, Taipei 115, Taiwan.

Institute of New Drug Development, China Medical University, Taichung 406, Taiwan.

出版信息

Nucleic Acids Res. 2021 May 7;49(8):4725-4737. doi: 10.1093/nar/gkab165.

Abstract

Mammalian cyclic GMP-AMP synthase (cGAS) and its homologue dinucleotide cyclase in Vibrio cholerae (VcDncV) produce cyclic dinucleotides (CDNs) that participate in the defense against viral infection. Recently, scores of new cGAS/DncV-like nucleotidyltransferases (CD-NTases) were discovered, which produce various CDNs and cyclic trinucleotides (CTNs) as second messengers. Here, we present the crystal structures of EcCdnD, a CD-NTase from Enterobacter cloacae that produces cyclic AMP-AMP-GMP, in its apo-form and in complex with ATP, ADP and AMPcPP, an ATP analogue. Despite the similar overall architecture, the protein shows significant structural variations from other CD-NTases. Adjacent to the donor substrate, another nucleotide is bound to the acceptor binding site by a non-productive mode. Isothermal titration calorimetry results also suggest the presence of two ATP binding sites. GTP alone does not bind to EcCdnD, which however binds to pppApG, a possible intermediate. The enzyme is active on ATP or a mixture of ATP and GTP, and the best metal cofactor is Mg2+. The conserved residues Asp69 and Asp71 are essential for catalysis, as indicated by the loss of activity in the mutants. Based on structural analysis and comparison with VcDncV and RNA polymerase, a tentative catalytic pathway for the CTN-producing EcCdnD is proposed.

摘要

哺乳动物环鸟苷酸-腺苷酸合酶(cGAS)及其同源二核苷酸环化酶在霍乱弧菌(VcDncV)中产生参与抗病毒感染的环二核苷酸(CDNs)。最近,发现了大量新的 cGAS/DncV 样核苷酸转移酶(CD-NTases),它们作为第二信使产生各种 CDNs 和环三核苷酸(CTNs)。在这里,我们展示了产环 AMP-AMP-GMP 的肠杆菌科 cGAS 样核苷酸转移酶 EcCdnD 的晶体结构,分别为apo 形式和与 ATP、ADP 和 AMPcPP(ATP 类似物)复合物的形式。尽管整体结构相似,但该蛋白与其他 CD-NTases 表现出显著的结构差异。在供体底物旁边,另一个核苷酸通过非生产性模式结合到受体结合位点。等温滴定量热法结果也表明存在两个 ATP 结合位点。单独的 GTP 不会与 EcCdnD 结合,但它与 pppApG 结合,后者可能是一种中间产物。该酶在 ATP 或 ATP 和 GTP 的混合物上具有活性,最佳金属辅因子是 Mg2+。保守残基 Asp69 和 Asp71 对催化至关重要,突变体失去了活性。基于结构分析和与 VcDncV 和 RNA 聚合酶的比较,提出了产 CTN 的 EcCdnD 的暂定催化途径。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/870b/8096243/9e290f993e45/gkab165fig1.jpg

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