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Interaction of the baculovirus anti-apoptotic protein p35 with caspases. Specificity, kinetics, and characterization of the caspase/p35 complex

机译:杆状病毒抗凋亡蛋白p35与胱天蛋白酶的相互作用。 caspase / p35复合物的特异性,动力学和特征

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The anti-apoptotic protein p35 from baculovirus is thought to prevent the suicidal response of infected insect cells by inhibiting caspases. Ectopic expression of p35 in a number of transgenic animals or cell lines is also anti-apoptotic, giving rise to the hypothesis that the protein is a general inhibitor of caspases. We have verified this hypothesis by demonstrating that purified recombinant p35 inhibits human caspase-1, -3, -6, -7, -8, and -10 with k(ass) values from 1.2 x 10(3) to 7 x 10(5) (M-1 s(-1)), and with upper limits of Ki values from 0.1 to 9 nM. Inhibition of 12 unrelated serine or cysteine proteases was insignificant, implying that p35 is a potent caspase-specific inhibitor. Mutation of the putative inhibitory loop to favor caspase-1 resulted in a substantial decline in caspase-3 inhibition, but minimal changes in caspase-1 inhibition. The interaction of p35 with caspase-3, as a model of the inhibitory mechanism, revealed classic slow-binding inhibition, with both active-sites of the caspase-3 dimer acting equally and independently. Inhibition resulted from complex formation between the enzyme and inhibitor, which could be visualized under nondenaturing conditions, but was dissociated by SDS to give p35 cleaved at Asp87, the P-1 residue of the inhibitor. Complex formation requires the substrate-binding cleft to be unoccupied. Taken together, these data revealed that p35 is an active-site-directed inhibitor highly adapted to inhibiting caspases. [References: 53]
机译:杆状病毒的抗凋亡蛋白p35被认为可以通过抑制胱天蛋白酶来预防被感染昆虫细胞的自杀反应。 p35在许多转基因动物或细胞系中的异位表达也具有抗凋亡作用,这导致了该蛋白是胱天蛋白酶的一般抑制剂的假设。我们通过证明纯化的重组p35抑制人caspase-1,-3,-6,-7,-8和-10的k(ass)值从1.2 x 10(3)到7 x 10( 5)(M-1 s(-1)),Ki值的上限为0.1到9 nM。对12种无关丝氨酸或半胱氨酸蛋白酶的抑制作用微不足道,这表明p35是强力的半胱天冬酶特异性抑制剂。推定的抑制环突变为偏爱caspase-1,导致caspase-3抑制作用显着下降,但caspase-1抑制作用变化很小。 p35与caspase-3的相互作用(作为抑制机制的模型)揭示了经典的慢结合抑制作用,caspase-3二聚体的两个活性位点均相同且独立地起作用。抑制作用是由于酶和抑制剂之间形成复杂的复合物而形成的,这种复合物可以在非变性条件下观察到,但通过SDS分解后可得到在Asp87处裂解的p35,即抑制剂的P-1残基。复合物的形成需要与基质结合的裂隙不被占用。综上所述,这些数据表明,p35是高度适应于抑制胱天蛋白酶的活性位点导向的抑制剂。 [参考:53]

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