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首页> 外文期刊>Antimicrobial agents and chemotherapy. >GRL-02031, a novel nonpeptidic protease inhibitor (PI) containing a stereochemically defined fused cyclopentanyltetrahydrofuran potent against multi-PI-resistant human immunodeficiency virus type 1 in vitro.
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GRL-02031, a novel nonpeptidic protease inhibitor (PI) containing a stereochemically defined fused cyclopentanyltetrahydrofuran potent against multi-PI-resistant human immunodeficiency virus type 1 in vitro.

机译:GRL-02031,一种新型的非肽蛋白酶抑制剂(PI),其中包含立体化学定义的稠合的环戊烷基四氢呋喃,可有效对抗多抗PI的人类免疫缺陷病毒1型。

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摘要

We generated a novel nonpeptidic protease inhibitor (PI), GRL-02031, by incorporating a stereochemically defined fused cyclopentanyltetrahydrofuran (Cp-THF) which exerted potent activity against a wide spectrum of human immunodeficiency virus type 1 (HIV-1) isolates, including multidrug-resistant HIV-1 variants. GRL-02031 was highly potent against laboratory HIV-1 strains and primary clinical isolates, including subtypes A, B, C, and E (50% effective concentration [EC(50)] range, 0.015 to 0.038 microM), with minimal cytotoxicity (50% cytotoxic concentration, >100 microM in CD4(+) MT-2 cells), although it was less active against two HIV-2 strains (HIV-2(EHO) and HIV-2(ROD)) (EC(50), approximately 0.60 microM) than against HIV-1 strains. GRL-02031 at relatively low concentrations blocked the infection and replication of each of the HIV-1(NL4-3) variants exposed to and selected by up to 5 microM of saquinavir, amprenavir, indinavir, nelfinavir, or ritonavir and 1 microM of lopinavir or atazanavir (EC(50) range, 0.036 to 0.14 microM). GRL-02031 was also potent against multi-PI-resistant clinical HIV-1 variants isolated from patients who had no response to the conventional antiretroviral regimens that then existed, with EC(50)s ranging from 0.014 to 0.042 microM (changes in the EC(50)s were less than twofold the EC(50) for wild-type HIV-1). Upon selection of HIV-1(NL4-3) in the presence of GRL-02031, mutants carrying L10F, L33F, M46I, I47V, Q58E, V82I, I84V, and I85V in the protease-encoding region and G62R (within p17), L363M (p24-p2 cleavage site), R409K (within p7), and I437T (p7-p1 cleavage site) in the gag-encoding region emerged. GRL-02031 was potent against a variety of HIV-1(NL4-3)-based molecular infectious clones containing a single primary mutation reported previously or a combination of such mutations, although it was slightly less active against HIV-1 variants containing consecutive amino acid substitutions: M46I and I47V or I84V and I85V. Structural modeling analysis demonstrated a distinct bimodal binding of GRL-02031 to protease, which may provide advantages to GRL-02031 in blocking the replication of a wide spectrum of HIV-1 variants resistant to PIs and in delaying the development of resistance of HIV-1 to GRL-02031. The present data warrant the further development of GRL-02031 as a potential therapeutic agent for the treatment of infections with primary and multidrug-resistant HIV-1 variants.
机译:我们通过并入立体化学定义的稠合环戊基四氢呋喃(Cp-THF),生成了一种新型的非肽蛋白酶抑制剂(PI)GRL-02031,它对多种人类免疫缺陷病毒1型(HIV-1)分离株(包括多药)具有强大的活性抗性HIV-1变体。 GRL-02031对实验室HIV-1菌株和主要临床分离株(包括A,B,C和E亚型,有效浓度为50%有效浓度[EC(50)],0.015至0.038 microM)有效,细胞毒性极小( 50%的细胞毒性浓度,在CD4(+)MT-2细胞中> 100 microM),尽管它对两种HIV-2毒株(HIV-2(EHO)和HIV-2(ROD))的活性较低(EC(50) (约0.60 microM),而不是针对HIV-1毒株。相对低浓度的GRL-02031阻止了暴露于并由高达5 microM的沙奎那韦,氨普那韦,茚地那韦,奈非那韦或利托那韦和1 microM洛匹那韦选择的HIV-1(NL4-3)变异体的感染和复制或阿扎那韦(EC(50)范围,0.036至0.14 microM)。 GRL-02031还具有抗多种PI耐药性临床HIV-1变体的作用,这些变体是从对当时存在的常规抗逆转录病毒疗法无反应的患者中分离出来的,EC(50)范围为0.014至0.042 microM(EC的变化(50)小于野生型HIV-1的EC(50)的两倍。在GRL-02031存在下选择HIV-1(NL4-3)后,在蛋白酶编码区和G62R(在p17内)携带L10F,L33F,M46I,I47V,Q58E,V82I,I84V和I85V的突变体,出现在gag编码区的L363M(p24-p2切割位点),R409K(p7内)和I437T(p7-p1切割位点)。 GRL-02031对多种基于HIV-1(NL4-3)的分子感染性克隆有效,这些克隆包含先前报道的单个主要突变或此类突变的组合,尽管它对含有连续氨基的HIV-1变体的活性稍差酸取代:M46I和I47V或I84V和I85V。结构建模分析表明GRL-02031与蛋白酶具有独特的双峰结合,这可能为GRL-02031提供了优势,可阻止对PIs产生抗药性的多种HIV-1变异体的复制,并延迟对HIV-1的抗性发展到GRL-02031。目前的数据保证了GRL-02031的进一步发展,它可以作为治疗原发性和多重耐药性HIV-1变异感染的潜在治疗剂。

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