Hekmat Omid, Kim Young-Wan, Williams Spencer J, He Shouming, Withers Stephen G
Protein Engineering Network of Centres of Excellence of Canada, Department of Chemistry, University of British Columbia, Vancouver, British Columbia V6T 1Z1, Canada.
J Biol Chem. 2005 Oct 21;280(42):35126-35. doi: 10.1074/jbc.M508434200. Epub 2005 Aug 5.
New proteomics methods are required for targeting and identification of subsets of a proteome in an activity-based fashion. Here, we report the first gel-free, mass spectrometry-based strategy for mechanism-based profiling of retaining beta-endoglycosidases in complex proteomes. Using a biotinylated, cleavable 2-deoxy-2-fluoroxylobioside inactivator, we have isolated and identified the active-site peptides of target retaining beta-1,4-glycanases in systems of increasing complexity: pure enzymes, artificial proteomes, and the secreted proteome of the aerobic mesophilic soil bacterium Cellulomonas fimi. The active-site peptide of a new C. fimi beta-1,4-glycanase was identified in this manner, and the peptide sequence, which includes the catalytic nucleophile, is highly conserved among glycosidase family 10 members. The glycanase gene (GenBank accession number DQ146941) was cloned using inverse PCR techniques, and the protein was found to comprise a catalytic domain that shares approximately 70% sequence identity with those of xylanases from Streptomyces sp. and a family 2b carbohydrate-binding module. The new glycanase hydrolyzes natural and artificial xylo-configured substrates more efficiently than their cello-configured counterparts. It has a pH dependence very similar to that of known C. fimi retaining glycanases.
需要新的蛋白质组学方法以基于活性的方式靶向和鉴定蛋白质组的亚群。在此,我们报告了首个基于质谱的无凝胶策略,用于在复杂蛋白质组中对保留型β-内糖苷酶进行基于机制的分析。使用生物素化的、可裂解的2-脱氧-2-氟木二糖苷失活剂,我们在复杂度不断增加的系统中分离并鉴定了目标保留型β-1,4-聚糖酶的活性位点肽段:纯酶、人工蛋白质组以及需氧嗜温土壤细菌纤维单胞菌(Cellulomonas fimi)的分泌蛋白质组。通过这种方式鉴定了一种新的纤维单胞菌β-1,4-聚糖酶的活性位点肽段,该肽段序列包括催化亲核试剂,在糖苷酶家族10成员中高度保守。使用反向PCR技术克隆了聚糖酶基因(GenBank登录号DQ146941),发现该蛋白质包含一个催化结构域,与链霉菌属木聚糖酶的催化结构域具有约70%的序列同一性,以及一个2b家族碳水化合物结合模块。这种新的聚糖酶比其纤维二糖构型的对应物更有效地水解天然和人工木糖构型的底物。它的pH依赖性与已知的纤维单胞菌保留型聚糖酶非常相似。