Díaz B G, Gross S, Assfalg-Machleidt I, Pfeiler D, Gollmitzer N, Gabrijelcic-Geiger D, Stubbs M T, Fritz H, Auerswald E A, Machleidt W
Abteilung für Klinische Chemie und Klinische Biochemie, Chirurgische Klinik Innenstadt, Klinikum der Ludwig-Maximilians-Universität, München, Germany.
Biol Chem. 2001 Jan;382(1):97-107. doi: 10.1515/BC.2001.015.
Within the cystatin superfamily, only kininogen domain 2 (KD2) is able to inhibit mu- and m-calpain. In an attempt to elucidate the structural requirements of cystatins for calpain inhibition, we constructed recombinant hybrids of human stefin B (an intracellular family 1 cystatin) with KD2 and deltaL110 deletion mutants of chicken cystatin-KD2 hybrids. Substitution of the N-terminal contact region of stefin B by the corresponding KD2 sequence resulted in a calpain inhibitor of Ki = 188 nM. Deletion of L110, which forms a beta-bulge in family 1 and 2 cystatins but is lacking in KD2, improved inhibition of mu-calpain 4- to 8-fold. All engineered cystatins were temporary inhibitors of calpain due to slow substrate-like cleavage of a single peptide bond corresponding to Gly9-Ala10 in chicken cystatin. Biomolecular interaction analysis revealed that, unlike calpastatin, the cystatin-type inhibitors do not bind to the calmodulin-like domain of the small subunit of calpain, and their interaction with the mu-calpain heterodimer is completely prevented by a synthetic peptide comprising subdomain B of calpastatin domain 1. Based on these results we propose that (i) cystatin-type calpain inhibitors interact with the active site of the catalytic domain of calpain in a similar cystatin-like mode as with papain and (ii) the potential for calpain inhibition is due to specific subsites within the papain-binding regions of the general cystatin fold.
在胱抑素超家族中,只有激肽原结构域2(KD2)能够抑制μ-钙蛋白酶和m-钙蛋白酶。为了阐明胱抑素对钙蛋白酶抑制作用的结构要求,我们构建了人丝抑蛋白B(一种细胞内1型胱抑素)与KD2的重组杂交体以及鸡胱抑素-KD2杂交体的deltaL110缺失突变体。用相应的KD2序列替换丝抑蛋白B的N端接触区域,得到了一种Ki = 188 nM的钙蛋白酶抑制剂。L110的缺失在1型和2型胱抑素中形成β-凸起,但在KD2中不存在,这使对μ-钙蛋白酶的抑制作用提高了4至8倍。由于鸡胱抑素中对应于Gly9-Ala10的单个肽键发生类似底物的缓慢裂解,所有工程化的胱抑素都是钙蛋白酶的临时抑制剂。生物分子相互作用分析表明,与钙蛋白酶抑制蛋白不同(钙蛋白酶抑制蛋白是一种内源性钙蛋白酶抑制剂),胱抑素型抑制剂不与钙蛋白酶小亚基的钙调蛋白样结构域结合,并且包含钙蛋白酶抑制蛋白结构域1亚结构域B的合成肽完全阻止了它们与μ-钙蛋白酶异二聚体的相互作用。基于这些结果,我们提出:(i)胱抑素型钙蛋白酶抑制剂以与木瓜蛋白酶类似的胱抑素样模式与钙蛋白酶催化结构域的活性位点相互作用;(ii)钙蛋白酶抑制潜力归因于一般胱抑素折叠的木瓜蛋白酶结合区域内的特定亚位点。