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痘病毒胸苷酸激酶的晶体结构:一种意外的二聚化对抗病毒治疗具有启示意义。

Crystal structure of poxvirus thymidylate kinase: an unexpected dimerization has implications for antiviral therapy.

作者信息

Caillat Christophe, Topalis Dimitri, Agrofoglio Luigi A, Pochet Sylvie, Balzarini Jan, Deville-Bonne Dominique, Meyer Philippe

机构信息

Laboratoire d'Enzymologie et Biochimie Structurales, Centre National de la Recherche Scientifique, Unité Propre de Recherche 3082, 91 198 Gif-sur-Yvette Cedex, France.

出版信息

Proc Natl Acad Sci U S A. 2008 Nov 4;105(44):16900-5. doi: 10.1073/pnas.0804525105. Epub 2008 Oct 29.

DOI:10.1073/pnas.0804525105
PMID:18971333
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC2579350/
Abstract

Unlike most DNA viruses, poxviruses replicate in the cytoplasm of host cells. They encode enzymes needed for genome replication and transcription, including their own thymidine and thymidylate kinases. Some herpes viruses encode only 1 enzyme catalyzing both reactions, a peculiarity used for prodrug activation to obtain maximum specificity. We have solved the crystal structures of vaccinia virus thymidylate kinase bound to TDP or brivudin monophosphate. Although the viral and human enzymes have similar sequences (42% identity), they differ in their homodimeric association and active-site geometry. The vaccinia TMP kinase dimer arrangement is orthogonal and not antiparallel as in human enzyme. This different monomer orientation is related to the presence of a canal connecting the edge of the dimer interface to the TMP base binding pocket. Consequently, the pox enzyme accommodates nucleotides with bulkier bases, like brivudin monophosphate and dGMP; these are efficiently phosphorylated and stabilize the enzyme. The brivudin monophosphate-bound structure explains the structural basis for this specificity, opening the way to the rational development of specific antipox agents that may also be suitable for poxvirus TMP kinase gene-based chemotherapy of cancer.

摘要

与大多数DNA病毒不同,痘病毒在宿主细胞的细胞质中复制。它们编码基因组复制和转录所需的酶,包括自身的胸苷激酶和胸苷酸激酶。一些疱疹病毒仅编码一种催化这两种反应的酶,这种特性被用于前药激活以获得最大特异性。我们已经解析了与TDP或溴夫定单磷酸结合的痘苗病毒胸苷酸激酶的晶体结构。尽管病毒酶和人类酶具有相似的序列(42%的同一性),但它们在同二聚体结合和活性位点几何结构上有所不同。痘苗病毒TMP激酶二聚体的排列是正交的,而不像人类酶那样是反平行的。这种不同的单体取向与一条连接二聚体界面边缘和TMP碱基结合口袋的通道的存在有关。因此,痘病毒酶能够容纳具有更大碱基的核苷酸,如溴夫定单磷酸和dGMP;这些核苷酸能被有效磷酸化并使酶稳定。溴夫定单磷酸结合的结构解释了这种特异性的结构基础,为合理开发可能也适用于基于痘病毒TMP激酶基因的癌症化疗的特异性抗痘病毒药物开辟了道路。

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