Uttamchandani Mahesh, Wang Jun, Li Junqi, Hu Mingyu, Sun Hongyan, Chen Kitty Y-T, Liu Kai, Yao Shao Q
Department of Biological Sciences, National University of Singapore, Singapore 117543.
J Am Chem Soc. 2007 Jun 27;129(25):7848-58. doi: 10.1021/ja070870h. Epub 2007 Jun 1.
We report the inhibitor fingerprints of seven matrix metalloproteases, representing all five established families of this important class of enzymes, against a highly diversified small-molecule library. A total of 1400 peptide hydroxamates were individually prepared by systematically permuting both natural and unnatural amino acids across the P1', P2', and P3' positions, thereby generating an inhibitor library with three-pronged structural diversity. High-throughput screenings were efficiently conducted in microtiter plate format, providing a rapid and quantitative determination of inhibitor potency across the panel of enzymes. Despite similarities in substrate preferences and structural homologies within this class of enzymes, our findings revealed distinct patterns of inhibition for each MMP against varied chemical scaffolds. The resulting inhibitor fingerprints readily facilitated the identification of inhibitors with good potency as well as desirable selectivity, potentially minimizing adverse effects when developing such leads into candidate drugs. The strategy also offers a novel method for the functional classification of matrix metalloproteases, on the basis of the characteristic profiles obtained using the diverse set of inhibitors. This approach thus paves the way forward in lead identification by providing a rapid and quantitative method for selectivity screening at the outset of the drug discovery process.
我们报告了七种基质金属蛋白酶的抑制剂指纹图谱,这些酶代表了这一重要酶类的所有五个已确定的家族,针对的是一个高度多样化的小分子文库。通过在P1'、P2'和P3'位置系统地排列天然和非天然氨基酸,总共单独制备了1400种肽羟基肟酸,从而生成了一个具有三方面结构多样性的抑制剂文库。以微孔板形式高效地进行了高通量筛选,能够快速、定量地测定整个酶组中抑制剂的效力。尽管这类酶在底物偏好和结构同源性方面存在相似性,但我们的研究结果揭示了每种基质金属蛋白酶对不同化学支架的独特抑制模式。由此产生的抑制剂指纹图谱便于轻松识别具有高效力和理想选择性的抑制剂,在将此类先导化合物开发成候选药物时可能会将副作用降至最低。该策略还提供了一种基于使用多样的抑制剂获得的特征图谱对基质金属蛋白酶进行功能分类的新方法。因此,这种方法通过在药物发现过程开始时提供一种快速、定量的选择性筛选方法,为先导化合物的识别铺平了道路。