Yang Guangwei, Wang Jimin, Cheng Yao, Dutschman Ginger E, Tanaka Hiromichi, Baba Masanori, Cheng Yung-Chi
Department of Pharmacology, School of Medicine, Yale University, 333 Cedar Street, New Haven, CT 06520, USA.
Antimicrob Agents Chemother. 2008 Jun;52(6):2035-42. doi: 10.1128/AAC.00083-08. Epub 2008 Apr 7.
2',3'-Didehydro-3'-deoxy-4'-ethynylthymidine (4'-Ed4T), a recently discovered nucleoside reverse transcriptase (RT) inhibitor, exhibits 5- to 10-fold-higher activity against human immunodeficiency virus type 1 (HIV-1) and less cytotoxicity than does its parental compound d4T (stavudine). Using steady-state kinetic approaches, we have previously shown that (i) 4'-ethynyl-d4T triphosphate (4'-Ed4TTP) inhibits HIV-1 RT more efficiently than d4TTP does and (ii) its inhibition efficiency toward the RT M184V mutant is threefold less than that toward wild-type (wt) RT. In this study we used pre-steady-state kinetic approaches in an attempt to understand its mechanism of inhibition. With wt and the M184V mutant RTs, 4'-Ed4TTP has three- to fivefold-lower K(d) (dissociation constant) values than d4TTP, while d4TTP has up to eightfold-higher K(d) values than dTTP. Inhibition is more effective in DNA replication with RNA template than with DNA template. In general, the M184V mutant exhibits poorer binding for all three nucleoside triphosphates than does wt RT. The structural basis for the lower binding affinity of d4TTP than of dTTP could be the lack of hydrogen bonds from the missing 3'-hydroxyl group in d4TTP to the backbone amide of Y115 and also to the side chain of Q151. The structural basis for the higher binding affinity of 4'-Ed4TTP than of d4TTP could be the additional binding of the 4'-ethynyl group in a preformed hydrophobic pocket by A114, Y115, M184, F160, and part of D185.
2',3'-二脱氢-3'-脱氧-4'-乙炔基胸苷(4'-Ed4T)是一种最近发现的核苷逆转录酶(RT)抑制剂,对1型人类免疫缺陷病毒(HIV-1)的活性比其母体化合物d4T(司他夫定)高5至10倍,且细胞毒性更小。我们之前使用稳态动力学方法表明:(i)4'-乙炔基-d4T三磷酸酯(4'-Ed4TTP)比d4TTP更有效地抑制HIV-1 RT;(ii)其对RT M184V突变体的抑制效率比对野生型(wt)RT低三倍。在本研究中,我们使用预稳态动力学方法试图了解其抑制机制。对于wt和M184V突变体RT,4'-Ed4TTP的K(d)(解离常数)值比d4TTP低三至五倍,而d4TTP的K(d)值比dTTP高八倍。在以RNA为模板的DNA复制中,抑制作用比以DNA为模板时更有效。一般来说,M184V突变体对所有三种核苷三磷酸酯的结合都比wt RT差。d4TTP比dTTP结合亲和力低的结构基础可能是d4TTP中缺失的3'-羟基与Y115的主链酰胺以及Q151的侧链之间缺乏氢键。4'-Ed4TTP比d4TTP结合亲和力高的结构基础可能是4'-乙炔基通过A114、Y115、M184、F160和部分D185在一个预先形成的疏水口袋中的额外结合。