Chang Chuan-Fa, Ho Chin-Wen, Wu Chung-Yi, Chao Tsrong-An, Wong Chi-Huey, Lin Chun-Hung
The Genomic Research Center and Institute of Biological Chemistry, Academia Sinica, No. 128 Academia Road Section 2, Nan-Kang, Taipei 11529, Taiwan.
Chem Biol. 2004 Sep;11(9):1301-6. doi: 10.1016/j.chembiol.2004.07.009.
Glycosidase inhibitors have shown great medicinal and pharmaceutical values as exemplified by the therapeutic treatment of influenza virus and non-insulin-dependent diabetes. We herein report the discovery of picomolar slow tight-binding inhibitors 2-5 against the alpha-fucosidase from Corynebacterium sp. by a rapid screening for an optimal aglycon attached to 1-aminomethyl fuconojirimycin (1). The time-dependent inhibition displays the progressive tightening of enzyme-inhibitor complex from a low nanomolar K(i) to picomolar K(i)* value. Particularly compound 2 with a K(i)* of 0.46 pM represents the most potent glycosidase inhibitor to date. The effect of compound 3 on the intrinsic fluorescence of alpha-fucosidase is both time- and concentration-dependent in a saturation-type manner, which is consistent with the initial formation of a rapid equilibrium complex of enzyme and inhibitor (E.I), followed by the slower formation of a tightly bound enzyme-inhibitor complex (E.I*). The binding affinity increases 3.5 x 10(4)-fold from 1 (K(i) = 16.3 nM) to 2 (K(i)* = 0.46 pM). This work clearly demonstrates the effectiveness of our combinatorial approach leading to the rapid discovery of potent inhibitors.
糖苷酶抑制剂已显示出巨大的医学和药学价值,如在流感病毒治疗和非胰岛素依赖型糖尿病治疗中所体现的那样。我们在此报告,通过对连接于1-氨基甲基岩藻诺吉霉素(1)上的最佳苷元进行快速筛选,发现了针对棒状杆菌属α-岩藻糖苷酶的皮摩尔级慢紧密结合抑制剂2 - 5。时间依赖性抑制显示酶 - 抑制剂复合物从低纳摩尔的K(i)值逐渐紧密到皮摩尔级的K(i)值。特别是化合物2的K(i)为0.46 pM,是迄今为止最有效的糖苷酶抑制剂。化合物3对α-岩藻糖苷酶固有荧光的影响在饱和型方式下呈现时间和浓度依赖性,这与酶和抑制剂快速平衡复合物(E.I)的初始形成以及随后紧密结合的酶 - 抑制剂复合物(E.I)的较慢形成一致。结合亲和力从1(K(i) = 16.3 nM)到2(K(i) = 0.46 pM)增加了3.5×10⁴倍。这项工作清楚地证明了我们组合方法在快速发现强效抑制剂方面的有效性。