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鉴定半胱氨酸蛋白酶抑制剂人胱抑素C和鸡胱抑素可能的抑制反应位点。

Identification of the probable inhibitory reactive sites of the cysteine proteinase inhibitors human cystatin C and chicken cystatin.

作者信息

Abrahamson M, Ritonja A, Brown M A, Grubb A, Machleidt W, Barrett A J

出版信息

J Biol Chem. 1987 Jul 15;262(20):9688-94.

PMID:3496337
Abstract

When an excess of human cystatin C or chicken cystatin was mixed with papain, an enzyme-inhibitor complex was formed immediately. The residual free cystatin was then progressively converted to a form with different electrophoretic mobility and chromatographic properties. The modified cystatins were isolated and sequenced, showing that there had been cleavage of a single peptide bond in each molecule: Gly11-Gly12 in cystatin C, and Gly9-Ala10 in chicken cystatin. The residues Gly11 (cystatin C) and Gly9 (chicken cystatin) are among only three residues conserved in all known sequences of inhibitory cystatins. The modified cystatins were at least 1000-fold weaker inhibitors of papain than the native cystatins. An 18-residue synthetic peptide corresponding to residues 4-21 of cystatin C did not inhibit papain but was cleaved at the same Gly-Gly bond as cystatin C. When iodoacetate or L-3-carboxy-trans-2,3-epoxypropionyl-leucylamido-(4-guanidin o)butane was added to the mixtures of either cystatin with papain, modification of the excess cystatin was blocked. Papain-cystatin complexes were stable to prolonged incubation, even in the presence of excess papain. We conclude that the peptidyl bond of the conserved glycine residue in human cystatin C and chicken cystatin probably is part of a substrate-like inhibitory reactive site of these cysteine proteinase inhibitors of the cystatin superfamily and that this may be true also for other inhibitors of this superfamily. We also propose that human cystatin C and chicken cystatin, and probably other cystatins as well, inhibit cysteine proteinases by the simultaneous interactions with such proteinases of the inhibitory reactive sites and other, so far not identified, areas of the cystatins. The cleavage of the inhibitory reactive site glycyl bond in mixtures of papain with excess quantities of cystatins is apparently due to the activity of a small percentage of atypical cysteine proteinase molecules in the papain preparation that form only very loose complexes with cystatins under the conditions employed and degrade the free cystatin molecules.

摘要

当过量的人胱抑素C或鸡胱抑素与木瓜蛋白酶混合时,会立即形成酶-抑制剂复合物。然后,残留的游离胱抑素会逐渐转化为具有不同电泳迁移率和色谱性质的形式。对修饰后的胱抑素进行分离和测序,结果表明每个分子中都有一个肽键被裂解:胱抑素C中的Gly11-Gly12以及鸡胱抑素中的Gly9-Ala10。Gly11(胱抑素C)和Gly9(鸡胱抑素)残基是所有已知抑制性胱抑素序列中仅有的三个保守残基。修饰后的胱抑素对木瓜蛋白酶的抑制作用比天然胱抑素至少弱1000倍。一条对应于胱抑素C第4至21位残基的18个残基的合成肽不抑制木瓜蛋白酶,但会在与胱抑素C相同的Gly-Gly键处被裂解。当向胱抑素与木瓜蛋白酶的混合物中加入碘乙酸或L-3-羧基-反式-2,3-环氧丙酰基-亮氨酰胺基-(4-胍基)丁烷时,过量胱抑素的修饰被阻断。木瓜蛋白酶-胱抑素复合物即使在存在过量木瓜蛋白酶的情况下,经长时间孵育仍保持稳定。我们得出结论,人胱抑素C和鸡胱抑素中保守甘氨酸残基的肽键可能是这些胱抑素超家族半胱氨酸蛋白酶抑制剂类似底物的抑制反应位点的一部分,并且对于该超家族的其他抑制剂可能也是如此。我们还提出,人胱抑素C和鸡胱抑素,可能还有其他胱抑素,通过抑制反应位点与这些蛋白酶以及胱抑素其他尚未确定的区域同时相互作用来抑制半胱氨酸蛋白酶。在木瓜蛋白酶与过量胱抑素的混合物中,抑制反应位点甘氨酰键的裂解显然是由于木瓜蛋白酶制剂中一小部分非典型半胱氨酸蛋白酶分子的活性所致,这些分子在所用条件下与胱抑素仅形成非常松散的复合物,并降解游离的胱抑素分子。

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