Moldoveanu Tudor, Jia Zongchao, Davies Peter L
Department of Biochemistry and the Protein Engineering Network of Centres of Excellence, Queen's University, Kingston, Ontario K7L 3N6, Canada.
J Biol Chem. 2004 Feb 13;279(7):6106-14. doi: 10.1074/jbc.M310460200. Epub 2003 Oct 27.
The active site residues in calpain are mis-aligned in the apo, Ca(2+)-free form. Alignment for catalysis requires binding of Ca2+ to two non-EF-hand sites, one in each of the core domains I and II. Using domain swap constructs between the protease cores of the mu and m isoforms (which have different Ca2+ requirements) and structural and biochemical characterization of site-directed mutants, we have deduced the order of Ca2+ binding and the basis of the cooperativity between the two sites. Ca2+ binds first to the partially preformed site in domain I. Knockout of this site through D106A substitution eliminates binding to this domain as shown by the crystal structure of D106A muI-II. However, at elevated Ca2+ concentrations this mutant still forms the double salt bridge that links the two Ca2+ sites and becomes nearly as active as muI-II. Elimination of the bridge in E333A muI-II has a more drastic effect on enzyme action, especially at low Ca2+ concentrations. Domain II Ca2+ binding appears essential, because Ca(2+)-coordinating side-chain mutants E302R and D333A have severely impaired muI-II activation and activity. The introduction of mutations into the whole heterodimeric enzyme that eliminate the salt bridge or Ca2+ binding to domain II produce similar phenotypes, suggesting that the protease core Ca2+ switch is crucial and cannot be overridden by Ca2+ binding to other domains.
钙蛋白酶的活性位点残基在无钙离子的脱辅基形式中排列错误。催化作用所需的排列要求钙离子与两个非EF手型位点结合,一个在核心结构域I中,另一个在核心结构域II中。利用μ和m同工型蛋白酶核心之间的结构域交换构建体(它们具有不同的钙离子需求)以及定点突变体的结构和生化特征,我们推断出了钙离子结合的顺序以及两个位点之间协同作用的基础。钙离子首先结合到结构域I中部分预先形成的位点。通过D106A替换敲除该位点会消除与该结构域的结合,如D106A μI-II的晶体结构所示。然而,在较高的钙离子浓度下,该突变体仍然形成连接两个钙离子位点的双盐桥,并变得几乎与μI-II一样有活性。在E333A μI-II中消除该桥对酶的作用有更显著的影响,尤其是在低钙离子浓度下。结构域II的钙离子结合似乎至关重要,因为钙离子配位侧链突变体E302R和D333A严重损害了μI-II的激活和活性。在整个异二聚体酶中引入消除盐桥或钙离子与结构域II结合的突变会产生类似的表型,这表明蛋白酶核心的钙离子开关至关重要,并且不能被钙离子与其他结构域的结合所取代。