Nycander M, Estrada S, Mort J S, Abrahamson M, Björk I
Department of Veterinary Medical Chemistry, Swedish University of Agricultural Sciences, The Biomedical Center, Uppsala.
FEBS Lett. 1998 Jan 23;422(1):61-4. doi: 10.1016/s0014-5793(97)01604-9.
Stopped-flow kinetics showed that the inhibition of the lysosomal cysteine proteinase, cathepsin B, by its endogenous inhibitor, cystatin C, occurs by a two-step mechanism, in which an initial, weak interaction is followed by a conformational change. The initial interaction most likely involves binding of the N-terminal region of the inhibitor to the proteinase. Considerable evidence indicates that the subsequent conformational change is due to the inhibitor displacing the occluding loop of the proteinase that partially obscures the active site. The presence of this loop, which allows the enzyme to function as an exopeptidase, thus complicates the inhibition mechanism, rendering cathepsin B much less susceptible than other cysteine proteinases to inhibition by cystatins.
停流动力学表明,溶酶体半胱氨酸蛋白酶组织蛋白酶B被其内源性抑制剂胱抑素C抑制是通过两步机制发生的,其中首先是弱相互作用,随后发生构象变化。最初的相互作用很可能涉及抑制剂的N端区域与蛋白酶的结合。大量证据表明,随后的构象变化是由于抑制剂取代了蛋白酶的封闭环,该封闭环部分遮盖了活性位点。这个环的存在使该酶能够作为外肽酶发挥作用,从而使抑制机制变得复杂,使得组织蛋白酶B比其他半胱氨酸蛋白酶更不易被胱抑素抑制。