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钙蛋白酶抑制蛋白肽B27-WT的钙蛋白酶抑制活性的结构决定因素。

Structural determinants of the calpain inhibitory activity of calpastatin peptide B27-WT.

作者信息

Betts Russell, Weinsheimer Shantel, Blouse Grant E, Anagli John

机构信息

Division of Biochemical Research, Department of Pathology, Henry Ford Health Sciences Center, Detroit, Michigan 48202, USA.

出版信息

J Biol Chem. 2003 Mar 7;278(10):7800-9. doi: 10.1074/jbc.M208350200. Epub 2002 Dec 24.

Abstract

Calpastatin is the natural specific inhibitor of calpain. Recent research has linked uncontrolled calpain activation to tissue damage after neuronal and cardiac ischemias, traumatic spine and brain injuries, as well as Alzheimer's disease and cataract formation. An imbalance between the activities of calpain and calpastatin is believed to be responsible for the pathological role of calpain. An important key to understanding calpain regulation by calpastatin is to determine, at the molecular level, how calpastatin interacts with calpain to inhibit its enzymatic activity. A 27-residue peptide (DPMSSTYIEELGKREVTIPPKYRELLA) derived from subdomain 1B of the repetitive domains of calpain, named peptide B27-WT, was previously shown to be a potent inhibitor of mu- and m-calpain. In this report, a combination of beta-alanine scanning mutagenesis and kinetic measurements was used to probe, in a quantitative, systematic, and simultaneous fashion, the relative contribution of the amino acid side chain and backbone functionalities to the overall calpain-inhibitory activity of B27-WT. The study identified two "hot spots," Leu(11)-Gly(12) and Thr(17)-Ile(18)-Pro(19), in B27-WT within which the residues critical for inhibitory function are clustered. Mutation of any one of the key residues in either of the two hot spots resulted in a dramatic loss of inhibitory activity. Furthermore, it was shown that a restricted conformation of the Leu(11)-Gly(12) and Thr(17)-Ile(18)-Pro(19) backbones is required for the peptide inhibitory function. These results suggest a plausible model in which the two hot spots are situated at or near the interface(s) of the calpain-calpastatin complex and act in a concerted fashion to inhibit calpain. The information on the specific contribution of the amide bond and side chain of each key residue to the bioactivity of B27-WT will contribute to a better understanding of the mechanism of calpain inhibition and lead to novel and effective therapies based on the specific inhibition of dysregulated or overactivated calpain.

摘要

钙蛋白酶抑制蛋白是钙蛋白酶的天然特异性抑制剂。最近的研究已将不受控制的钙蛋白酶激活与神经元和心脏缺血、创伤性脊柱和脑损伤以及阿尔茨海默病和白内障形成后的组织损伤联系起来。钙蛋白酶和钙蛋白酶抑制蛋白活性之间的失衡被认为是钙蛋白酶发挥病理作用的原因。理解钙蛋白酶抑制蛋白对钙蛋白酶调节作用的一个重要关键是在分子水平上确定钙蛋白酶抑制蛋白如何与钙蛋白酶相互作用以抑制其酶活性。先前已证明,一种源自钙蛋白酶重复结构域1B亚结构域的27个残基的肽(DPMSSTYIEELGKREVTIPPKYRELLA),命名为肽B27-WT,是μ-钙蛋白酶和m-钙蛋白酶的有效抑制剂。在本报告中,结合β-丙氨酸扫描诱变和动力学测量,以定量、系统和同时的方式探究氨基酸侧链和主链功能对B27-WT整体钙蛋白酶抑制活性的相对贡献。该研究在B27-WT中确定了两个“热点”,即Leu(11)-Gly(12)和Thr(17)-Ile(18)-Pro(19),其中对抑制功能至关重要的残基聚集在一起。两个热点中任何一个关键残基的突变都会导致抑制活性急剧丧失。此外,研究表明,Leu(11)-Gly(12)和Thr(17)-Ile(18)-Pro(19)主链的受限构象是肽抑制功能所必需的。这些结果提示了一个合理的模型,其中两个热点位于钙蛋白酶-钙蛋白酶抑制蛋白复合物的界面处或附近,并协同作用以抑制钙蛋白酶。关于每个关键残基的酰胺键和侧链对B27-WT生物活性的具体贡献的信息将有助于更好地理解钙蛋白酶抑制机制,并基于对失调或过度激活的钙蛋白酶的特异性抑制开发新的有效疗法。

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