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一种新型核苷前药激活酶:类联苯水解酶蛋白的底物特异性

A novel nucleoside prodrug-activating enzyme: substrate specificity of biphenyl hydrolase-like protein.

作者信息

Kim Insook, Song Xueqin, Vig Balvinder S, Mittal Sachin, Shin Ho-Chul, Lorenzi Philip J, Amidon Gordon L

机构信息

Department of Pharmaceutical Sciences, College of Pharmacy, The University of Michigan, 428 Church Street, Ann Arbor, Michigan 48109-1065, USA.

出版信息

Mol Pharm. 2004 Mar-Apr;1(2):117-27. doi: 10.1021/mp0499757.

Abstract

Biphenyl hydrolase-like protein (BPHL, NCBI accession number NP_004323) is a novel human serine hydrolase recently identified as a human valacyclovirase, catalyzing the hydrolytic activation of the antiviral prodrugs valacyclovir and valganciclovir. The substrate specificity of BPHL was investigated with a series of amino acid ester prodrugs of the therapeutic nucleoside analogues: acyclovir, zidovudine, floxuridine, 2-bromo-5,6-dichloro-1-(beta-D-ribofuranosyl) benzimidazole, and gemcitabine. The hydrolysis of typical esterase and aminopeptidase substrates by BPHL was also investigated. The results indicate that the substrate specificity of BPHL is largely determined by the amino acid acyl promoiety, and is less sensitive to the nucleoside parent drugs. For all nucleoside parent drugs, BPHL preferred the hydrophobic amino acids valine, phenylalanine, and proline over the charged amino acids lysine and aspartic acid. The position and monoester or diester form of the prodrug were also important, with BPHL exhibiting higher affinity for the 5'-esters than for the 3'-esters and the 3',5'-diesters irrespective of amino acid type. Further, the presence of the 3'-amino acid ester considerably reduced the hydrolysis rate of the 5'-amino acid ester functionality. BPHL exhibited stereoselectivity with an L/D specificity ratio of 32 for 5'-valyl floxuridine and 1.5 for 5'-phenylalanyl floxuridine. The substrate specificity suggests that the substrate-binding pocket of BPHL has a hydrophobic acyl binding site which can accommodate the positively charged alpha-amino group, while having an alcohol leaving group binding site that can accommodate nucleoside analogues with a relatively generous spatial allowance. In conclusion, BPHL catalyzes the hydrolytic activation of amino acid esters of a broad range of therapeutic nucleoside analogues in addition to valacyclovir and valganciclovir and has considerable potential for utilization as an activation target for design of antiviral and anticancer nucleoside analogue prodrugs.

摘要

联苯水解酶样蛋白(BPHL,NCBI登录号NP_004323)是一种新型的人类丝氨酸水解酶,最近被鉴定为人类伐昔洛韦酶,可催化抗病毒前药伐昔洛韦和缬更昔洛韦的水解激活。使用一系列治疗性核苷类似物的氨基酸酯前药研究了BPHL的底物特异性:阿昔洛韦、齐多夫定、氟尿苷、2-溴-5,6-二氯-1-(β-D-呋喃核糖基)苯并咪唑和吉西他滨。还研究了BPHL对典型酯酶和氨肽酶底物的水解作用。结果表明,BPHL的底物特异性在很大程度上由氨基酸酰基部分决定,对核苷母体药物不太敏感。对于所有核苷母体药物,与带电荷的氨基酸赖氨酸和天冬氨酸相比,BPHL更喜欢疏水性氨基酸缬氨酸、苯丙氨酸和脯氨酸。前药的位置和单酯或二酯形式也很重要,无论氨基酸类型如何,BPHL对5'-酯的亲和力高于对3'-酯和3',5'-二酯的亲和力。此外,3'-氨基酸酯的存在大大降低了5'-氨基酸酯官能团的水解速率。BPHL表现出立体选择性,5'-缬氨酰氟尿苷的L/D特异性比为32,5'-苯丙氨酰氟尿苷的L/D特异性比为1.5。底物特异性表明,BPHL的底物结合口袋有一个疏水性酰基结合位点,可容纳带正电荷的α-氨基,同时有一个醇离去基团结合位点,可容纳空间允许相对较大的核苷类似物。总之,除了伐昔洛韦和缬更昔洛韦外,BPHL还催化多种治疗性核苷类似物的氨基酸酯的水解激活,在用作抗病毒和抗癌核苷类似物前药设计的激活靶点方面具有相当大的潜力。

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