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谷氨酰胺125突变为天冬酰胺会选择性地消除单纯疱疹病毒1型胸苷激酶的胸苷酸激酶活性。

Mutation of Gln125 to Asn selectively abolishes the thymidylate kinase activity of herpes simplex virus type 1 thymidine kinase.

作者信息

Degrève B, Esnouf R, De Clercq E, Balzarini J

机构信息

Rega Institute for Medical Research, Laboratory of Virology and Chemotherapy, Leuven, Belgium.

出版信息

Mol Pharmacol. 2001 Feb;59(2):285-93. doi: 10.1124/mol.59.2.285.

Abstract

The broad substrate specificity of herpes simplex virus type 1 (HSV-1) thymidine kinase (TK) has provided the basis for selective antiherpetic therapy and, more recently, suicide gene therapy for the treatment of cancer. We have now constructed an HSV-1 TK mutant enzyme, in which an asparagine (N) residue is substituted for glutamine (Q) at position 125, and have evaluated the effect of this amino acid change on enzymatic activity. In marked contrast with wild-type HSV-1 TK, which displays both thymidine kinase and thymidylate kinase activities, the HSV-1 TK(Q125N) mutant was unable to phosphorylate pyrimidine nucleoside monophosphates but retained significant phosphorylation activity for thymidine and a series of antiherpetic pyrimidine and purine nucleoside analogs. The abrogation of HSV-1 TK-associated thymidylate kinase activity resulted in a 100-fold accumulation of the monophosphate form of (E)-5-(2-bromovinyl)-2'-deoxyuridine (BVDU) in osteosarcoma cells transfected with the HSV-1 TK(Q125N) gene compared with osteosarcoma cells expressing wild-type HSV-1 TK. BVDU monophosphate accumulation gave rise to a much greater inhibition of cellular thymidylate synthase in HSV-1 TK(Q125N) gene-transfected cells than wild-type HSV-1 TK gene-transfected osteosarcoma tumor cells without significantly changing the cytostatic potency of BVDU for the HSV-1 TK gene-transfected tumor cells. Accordingly, the presence of the Q125N mutation in HSV-1 TK gene-transfected tumor cells was found to result in a multilog decrease in the cytostatic activity of those pyrimidine nucleoside analogs that in their monophosphate form do not have marked affinity for thymidylate synthase [i.e., 1-beta-D-arabinofuranosylthymine and (E)-5-(2-bromovinyl)-1-beta-D-arabinofuranosyluracil].

摘要

单纯疱疹病毒1型(HSV-1)胸苷激酶(TK)广泛的底物特异性为选择性抗疱疹治疗以及最近用于癌症治疗的自杀基因治疗奠定了基础。我们现已构建了一种HSV-1 TK突变酶,其中第125位的谷氨酰胺(Q)残基被天冬酰胺(N)残基取代,并评估了这种氨基酸变化对酶活性的影响。与具有胸苷激酶和胸苷酸激酶活性的野生型HSV-1 TK形成显著对比的是,HSV-1 TK(Q125N)突变体无法磷酸化嘧啶核苷单磷酸,但对胸苷以及一系列抗疱疹嘧啶和嘌呤核苷类似物仍保留显著的磷酸化活性。与表达野生型HSV-1 TK的骨肉瘤细胞相比,在转染了HSV-1 TK(Q125N)基因的骨肉瘤细胞中,HSV-1 TK相关的胸苷酸激酶活性的丧失导致(E)-5-(2-溴乙烯基)-2'-脱氧尿苷(BVDU)单磷酸形式积累了100倍。与野生型HSV-1 TK基因转染的骨肉瘤肿瘤细胞相比,BVDU单磷酸的积累在HSV-1 TK(Q125N)基因转染的细胞中对细胞胸苷酸合酶的抑制作用要大得多,而对HSV-1 TK基因转染的肿瘤细胞,BVDU的细胞生长抑制效力没有显著改变。因此,发现在HSV-1 TK基因转染的肿瘤细胞中存在Q125N突变会导致那些单磷酸形式对胸苷酸合酶没有明显亲和力的嘧啶核苷类似物的细胞生长抑制活性呈多对数下降[即1-β-D-阿拉伯呋喃糖基胸腺嘧啶和(E)-5-(2-溴乙烯基)-1-β-D-阿拉伯呋喃糖基尿嘧啶]。

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