Adams S E, Robinson E J, Miller D J, Rizkallah P J, Hallett M B, Allemann R K
School of Chemistry , Cardiff University , Main Building, Park Place , Cardiff , UK CF10 3AT . Email:
Institute of Infection & Immunology , School of Medicine , Heath Campus , Cardiff , UK CF14 4XN.
Chem Sci. 2015 Dec 1;6(12):6865-6871. doi: 10.1039/c5sc01158b. Epub 2015 Aug 24.
The cysteine protease calpain-I is linked to several diseases and is therefore a valuable target for inhibition. Selective inhibition of calpain-I has proved difficult as most compounds target the active site and inhibit a broad spectrum of cysteine proteases as well as other calpain isoforms. Selective inhibitors might not only be potential drugs but should act as tools to explore the physiological and pathophysiological roles of calpain-I. α-Mercaptoacrylic acid based calpain inhibitors are potent, cell permeable and selective inhibitors of calpain-I and calpain-II. These inhibitors target the calcium binding domain PEF(S) of calpain-I and -II. Here X-ray diffraction analysis of co-crystals of PEF(S) revealed that the disulfide form of an α-mercaptoacrylic acid bound within a hydrophobic groove that is also targeted by a calpastatin inhibitory region and made a greater number of favourable interactions with the protein than the reduced sulfhydryl form. Measurement of the inhibitory potency of the α-mercaptoacrylic acids and X-ray crystallography revealed that the IC values decreased significantly on oxidation as a consequence of the stereo-electronic properties of disulfide bonds that restrict rotation around the S-S bond. Consequently, thioether analogues inhibited calpain-I with potencies similar to those of the free sulfhydryl forms of α-mercaptoacrylic acids.
半胱氨酸蛋白酶钙蛋白酶-I与多种疾病相关,因此是一个有价值的抑制靶点。事实证明,选择性抑制钙蛋白酶-I很困难,因为大多数化合物靶向活性位点,会抑制多种半胱氨酸蛋白酶以及其他钙蛋白酶同工型。选择性抑制剂不仅可能成为潜在药物,还应作为探索钙蛋白酶-I生理和病理生理作用的工具。基于α-巯基丙烯酸的钙蛋白酶抑制剂是钙蛋白酶-I和钙蛋白酶-II的强效、细胞可渗透且具有选择性的抑制剂。这些抑制剂靶向钙蛋白酶-I和-II的钙结合结构域PEF(S)。在此,对PEF(S)共晶体的X射线衍射分析表明,α-巯基丙烯酸的二硫键形式结合在一个疏水凹槽内,该疏水凹槽也是钙蛋白酶抑制蛋白抑制区域的作用靶点,并且与蛋白质形成的有利相互作用比还原的巯基形式更多。对α-巯基丙烯酸的抑制效力测定和X射线晶体学研究表明,由于二硫键的立体电子性质限制了围绕S-S键的旋转,氧化后IC值显著降低。因此,硫醚类似物对钙蛋白酶-I的抑制效力与α-巯基丙烯酸的游离巯基形式相似。