Eckhard Ulrich, Schönauer Esther, Ducka Paulina, Briza Peter, Nüss Dorota, Brandstetter Hans
Division of Structural Biology, Department of Molecular Biology, University of Salzburg, Billrothstrasse 11, A-5020 Salzburg, Austria.
Biol Chem. 2009 Jan;390(1):11-8. doi: 10.1515/BC.2009.004.
Clostridial collagenases are used for a broad spectrum of biotechnological applications and represent prime target candidates for both therapy and diagnosis of clostridial infections. In this study, we biochemically characterized the catalytic domains of three clostridial collagenases, collagenase G (ColG) and H (ColH) from Clostridium histolyticum, and collagenase T (ColT) from C. tetani. All protein samples showed activity against a synthetic peptidic substrate (furylacryloyl-Leu-Gly-Pro-Ala, FALGPA) with ColH showing the highest overall activity and highest substrate affinity. Whereas the K(m) values of all three enzymes were within the same order of magnitude, the turnover rate k(cat) of ColG decreased 50- to 150-fold when compared to ColT and ColH. It is noteworthy that the protein N-terminus significantly impacts their substrate affinity and substrate turnover as well as their inhibition profile with 1,10-phenanthroline. These findings were complemented with the discovery of a strictly conserved double-glycine motif, positioned 28 amino acids upstream of the HEXXH zinc binding site, which is critical for enzymatic activity. These observations have consequences with respect to the topology of the N-terminus relative to the active site as well as possible activation mechanisms.
梭菌胶原酶可用于广泛的生物技术应用,是梭菌感染治疗和诊断的主要候选靶点。在本研究中,我们对三种梭菌胶原酶的催化结构域进行了生化特性分析,这三种酶分别是溶组织梭菌的胶原酶G(ColG)和胶原酶H(ColH),以及破伤风梭菌的胶原酶T(ColT)。所有蛋白质样品均对合成肽底物(呋喃丙烯酰 - 亮氨酸 - 甘氨酸 - 脯氨酸 - 丙氨酸,FALGPA)表现出活性,其中ColH的总体活性最高,底物亲和力也最高。虽然这三种酶的K(m)值处于同一数量级,但与ColT和ColH相比,ColG的周转速率k(cat)降低了50至150倍。值得注意的是,蛋白质N端对它们的底物亲和力、底物周转率以及与1,10 - 菲咯啉的抑制谱都有显著影响。这些发现还伴随着一个严格保守的双甘氨酸基序的发现,该基序位于HEXXH锌结合位点上游28个氨基酸处,对酶活性至关重要。这些观察结果对N端相对于活性位点的拓扑结构以及可能的激活机制都有影响。