Martínez-Martínez Irene, Navarro-Fernández José, Daniel Lozada-Ramírez José, García-Carmona Francisco, Sánchez-Ferrer Alvaro
Faculty of Biology, Department of Biochemistry and Molecular Biology-A, University of Murcia, Campus Espinardo, E-30100 Murcia, Spain.
Proteins. 2008 Apr;71(1):379-88. doi: 10.1002/prot.21705.
YesT, a putative protein from Bacillus subtilis ATCC 6633 that has been provisionally classified as a rhamnogalacturonan acetyl esterase (RGAE) in CE-12 family, was cloned, expressed in Escherichiacoli Rosetta (DE3), and purified. The enzyme is monomeric with a molecular mass of 37 kDa and presents thermophilic properties similar to RGAE from Aspergillus aculeatus, although YesT is more alkaliphilic. The study of inhibitors confirmed the importance of the His and the nucleophilic Ser for the esterase activity, apart from the Asp from the catalytic triad. This enzyme also presents broad substrate specificity, and is active toward 7-aminocephalosporanic acid, cephalosporin C, p-nitrophenyl acetate, beta-naphthyl acetate, glucose pentaacetate, and acetylated xylan. Moreover, YesT achieves a synergistic effect together with xylanase A toward acetylated xylan. As a member of the SGNH family, it does not adopt the common alpha/beta hydrolase fold. The primary sequence analysis and multiple sequence alignment revealed the lack of a two beta-stranded antiparallel sheet, which results in a clear change in the structure together with the disappearance of one of the three 3(10)-helices presented in RGAE structure. The similarities found in this article among the topological diagrams of RGAE, YesT, and Esterase A from Streptomyces scabies, Platelet-Activating Factor AcetylHydrolase, isoform Ib, alpha subunit [PAF-AH(Ib)alpha(1)], PAF-AH(Ib)alpha(2), the esterase domain from hemagglutinin esterase fusion glycoprotein (HEF1) from Influenza C virus, the thioesterase I (TAP) from E. coli, the hypothetical protein a1r1529 from Nostoc sp., and the hypothetical YxiM precursor that all belong to the SGNH family could indicate a possible divergence of such proteins from a common ancestor.
YesT是一种来自枯草芽孢杆菌ATCC 6633的假定蛋白,在CE-12家族中被暂时归类为鼠李半乳糖醛酸乙酰酯酶(RGAE),该蛋白被克隆出来,在大肠杆菌Rosetta (DE3)中表达并纯化。该酶为单体,分子量为37 kDa,具有与棘孢曲霉的RGAE相似的嗜热特性,不过YesT更耐碱。抑制剂研究证实,除了催化三联体中的天冬氨酸外,组氨酸和具有亲核性的丝氨酸对酯酶活性也很重要。这种酶还具有广泛的底物特异性,对7-氨基头孢烷酸、头孢菌素C、对硝基苯乙酸、β-萘乙酸、葡萄糖五乙酸酯和乙酰化木聚糖都有活性。此外,YesT与木聚糖酶A对乙酰化木聚糖具有协同作用。作为SGNH家族的一员,它不采用常见的α/β水解酶折叠结构。一级序列分析和多序列比对显示,它缺少两条反平行的β链片层,这导致结构发生明显变化,同时RGAE结构中三个3(10)-螺旋之一消失。本文在RGAE、YesT以及来自疮痂链霉菌的酯酶A、血小板活化因子乙酰水解酶同工型Ib的α亚基[PAF-AH(Ib)α(1)]、PAF-AH(Ib)α(2)、C型流感病毒血凝素酯酶融合糖蛋白(HEF1)的酯酶结构域以及大肠杆菌硫酯酶I(TAP)、 Nostoc sp.的假定蛋白a1r1529和假定的YxiM前体的拓扑图中发现的相似性,可能表明这些蛋白是从一个共同祖先分化而来的。