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利用相互作用动力学数据改进HIV-1蛋白酶抑制剂的构效关系分析

Improved structure-activity relationship analysis of HIV-1 protease inhibitors using interaction kinetic data.

作者信息

Shuman Cynthia F, Vrang Lotta, Danielson U Helena

机构信息

Department of Biochemistry, Uppsala University, BMC, Box 576, SE-751 23 Uppsala, Sweden.

出版信息

J Med Chem. 2004 Nov 18;47(24):5953-61. doi: 10.1021/jm0499110.

Abstract

Despite the availability of large amounts of data for HIV-protease inhibitors and their effectiveness with wild type and resistant enzyme, there is limited knowledge about how this and other information can be systematically applied to the development of new antiviral compounds. To identify in vitro parameters that correlate with the efficacy of HIV inhibitors in cell culture, the relationships between inhibition, interaction kinetic, and cell culture parameters for HIV-1 protease inhibitors were analyzed. Correlation, cluster, and principal component analysis of data for 37 cyclic and linear compounds revealed that the affinities (K(D)) determined from SPR-biosensor binding studies correlated better to cell culture efficacy (ED(50)) than that of the inhibition constants (K(i)), indicating that the conventional use of K(i) values for structure-activity relationship analysis of HIV-1 inhibitors should be seriously reconsidered. The association and dissociation kinetic rate constants (k(on) and k(off)) alone showed weak correlations with ED(50) values. However, ED(50) values were most related to the free enzyme concentration in the viral particle ([E]), calculated from the rate constants and the total enzyme concentration in a viral particle. A structure-activity relationship analysis of the current data set was found to be valid for all classes of compounds analyzed. In summary, use of affinity, based on interaction kinetic rate constants, rather than inhibition constants, and theoretical consideration of the physiological conditions in the virus particle provide improved structure-activity relationship analysis of HIV-1 protease inhibitors.

摘要

尽管有大量关于HIV蛋白酶抑制剂的数据,以及它们对野生型和耐药酶的有效性,但对于如何将这些信息及其他信息系统地应用于新型抗病毒化合物的开发,人们了解有限。为了确定与HIV抑制剂在细胞培养中的疗效相关的体外参数,分析了HIV-1蛋白酶抑制剂的抑制、相互作用动力学和细胞培养参数之间的关系。对37种环状和线性化合物的数据进行的相关性、聚类和主成分分析表明,通过表面等离子体共振生物传感器结合研究确定的亲和力(K(D))与细胞培养疗效(ED(50))的相关性优于抑制常数(K(i)),这表明在对HIV-1抑制剂进行构效关系分析时,应认真重新考虑传统上对K(i)值的使用。单独的缔合和解离动力学速率常数(k(on)和k(off))与ED(50)值的相关性较弱。然而,ED(50)值与病毒颗粒中的游离酶浓度([E])最为相关,[E]是根据速率常数和病毒颗粒中的总酶浓度计算得出的。发现对当前数据集进行的构效关系分析对所有分析的化合物类别都是有效的。总之,基于相互作用动力学速率常数而非抑制常数使用亲和力,并从理论上考虑病毒颗粒中的生理条件,可改进对HIV-1蛋白酶抑制剂的构效关系分析。

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