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(南)-甲氧基碳胸苷的生化与结构表征,其可特异性抑制单纯疱疹病毒1型胸苷激酶转导的骨肉瘤细胞生长。

Biochemical and structural characterization of (South)-methanocarbathymidine that specifically inhibits growth of herpes simplex virus type 1 thymidine kinase-transduced osteosarcoma cells.

作者信息

Schelling Pierre, Claus Michael T, Johner Regula, Marquez Victor E, Schulz Georg E, Scapozza Leonardo

机构信息

Institute of Pharmaceutical Sciences, Swiss Federal Institute of Technology (ETH), Winterthurerstrasse 190, CH-8057 Zurich, Switzerland.

出版信息

J Biol Chem. 2004 Jul 30;279(31):32832-8. doi: 10.1074/jbc.M313343200. Epub 2004 May 25.

Abstract

Two analogs of the natural nucleoside dT featuring a pseudosugar with fixed conformation in place of the deoxyribosyl residue (carbathymidine analogs) were biochemically and structurally characterized for their acceptance by both human cytosolic thymidine kinase isoenzyme 1 (hTK1) and herpes simplex virus type 1 thymidine kinase (HSV1 TK) and subsequently tested in cell proliferation assays. 3'-exo-Methanocarbathymidine ((South)-methanocarbathymidine (S)-MCT), which is a substrate for HSV1 TK, specifically inhibited growth of HSV1 TK-transduced human osteosarcoma cells with an IC(50) value in the range of 15 microM without significant toxicity toward both hTK1-negative (TK(-)) and non-transduced cells. 2'-exo-Methanocarbathymidine ((North)-methanocarbathymidine (N)-MCT), which is a weak substrate for hTK1 and a substantial one for HSV1 TK, induced a specific growth inhibition in HSV1 TK-transfected cells comparable to that of (S)-MCT and ganciclovir. A growth inhibition activity was also observed with (N)-MCT and ganciclovir in non-transduced cells in a cell line-dependent manner, whereas TK(-) cells were not affected. The presented 1.95-A crystal structure of the complex (S)-MCT.HSV1 TK explains both the more favorable binding affinity and catalytic turnover of (S)-MCT for HSV1 TK over the North analog. Additionally the plasticity of the active site of the enzyme is addressed by comparing the binding of (North)- and (South)-carbathymidine analogs. The presented study of these two potent candidate prodrugs for HSV1 TK gene-directed enzyme prodrug therapy suggests that (S)-MCT may be even safer to use than its North counterpart (N)-MCT.

摘要

两种天然核苷dT的类似物,其特征在于具有固定构象的假糖取代脱氧核糖基残基(碳胸腺嘧啶类似物),对其被人胞质胸苷激酶同工酶1(hTK1)和单纯疱疹病毒1型胸苷激酶(HSV1 TK)接受的情况进行了生物化学和结构表征,随后在细胞增殖试验中进行了测试。3'-外-甲氧基碳胸腺嘧啶((南)-甲氧基碳胸腺嘧啶(S)-MCT),它是HSV1 TK的底物,特异性抑制HSV1 TK转导的人骨肉瘤细胞的生长,IC(50)值在15 microM范围内,对hTK1阴性(TK(-))和未转导的细胞均无明显毒性。2'-外-甲氧基碳胸腺嘧啶((北)-甲氧基碳胸腺嘧啶(N)-MCT),它是hTK1的弱底物和HSV1 TK的大量底物,在HSV1 TK转染的细胞中诱导出与(S)-MCT和更昔洛韦相当的特异性生长抑制。在未转导的细胞中,(N)-MCT和更昔洛韦也以细胞系依赖的方式观察到生长抑制活性,而TK(-)细胞不受影响。所呈现的(S)-MCT.HSV1 TK复合物的1.95 Å晶体结构解释了(S)-MCT对HSV1 TK比对北类似物具有更有利的结合亲和力和催化周转率。此外,通过比较(北)-和(南)-碳胸腺嘧啶类似物的结合来探讨酶活性位点的可塑性。对这两种用于HSV1 TK基因导向酶前药疗法的强效候选前药的研究表明,(S)-MCT可能比其北对应物(N)-MCT使用起来更安全。

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