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首页> 外文期刊>Angewandte Chemie >The Bioinorganic Chemistry of Apoptosis: Potential Inhibitory Zinc Binding Sites in Caspase-3
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The Bioinorganic Chemistry of Apoptosis: Potential Inhibitory Zinc Binding Sites in Caspase-3

机译:细胞凋亡的生物无机化学:Caspase-3中潜在的抑制性锌结合位点。

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摘要

Zn~(2+) inhibits the action of several of the caspases and thus may act as a regulator of apoptosis. Reversal of this inhibition is one possible approach for the development of apoptosis-based therapies. Few studies describe the molecular details of the Zn~(2+)-caspase interaction, the understanding of which is essential for the success of any therapeutic strategies. Enzyme kinetics and biophysical studies have shown that the inhibition is of mixed type with prominent (ca. 60% of inhibition) uncompetitive characteristics and an IC_(50) of 0.8 μM under the conditions used. Fluorescence-based techniques confirmed that, during inhibition in the sub-micromolar range, substrate binding remains unaffected. A new zinc binding site composed of the catalytic histidine and a nearby methionine residue, rather than the catalytic histidine and cysteine dyad, is proposed based on the experimental observations. DFT models were used to demonstrate that the proposed site could be the preferred inhibitory zinc binding site.
机译:Zn〜(2+)抑制了几种半胱天冬酶的作用,因此可作为凋亡的调节剂。逆转这种抑制作用是开发基于凋亡的疗法的一种可能方法。很少有研究描述Zn〜(2 +)-caspase相互作用的分子细节,对此的理解对于任何治疗策略的成功都是必不可少的。酶动力学和生物物理研究表明,这种抑制作用是混合型的,具有明显的竞争特征(约占抑制作用的60%),在所用条件下的IC_(50)为0.8μM。基于荧光的技术证实,在亚微摩尔范围内的抑制作用期间,底物结合仍然不受影响。基于实验观察,提出了一个新的锌结合位点,该位点由催化组氨酸和附近的蛋氨酸残基组成,而不是催化组氨酸和半胱氨酸二聚体。 DFT模型用于证明所提议的位点可能是优选的抑制性锌结合位点。

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