Crepin Valerie F, Faulds Craig B, Connerton Ian F
University of Nottingham, School of Biosciences, Division of Food Sciences, Sutton Bonington Campus, Loughborough LE12 5RD, UK.
Protein Expr Purif. 2003 Jun;29(2):176-84. doi: 10.1016/s1046-5928(03)00050-0.
Feruloyl esterases constitute an interesting group of enzymes that have the potential for use over a broad range of applications in the agri-food industries. We report the over-expression and characterization of a novel feruloyl esterase exhibiting broad substrate specificity from Talaromyces stipitatus (FAEC) in Pichia pastoris. Using various gene constructions, we have investigated the use of alternative signal peptides to produce an authentic feruloyl esterase featuring the N-terminal sequence determined for the native enzyme. We demonstrate that additional amino acids at the N-terminus of the FAEC sequence do not influence the catalytic capacity of the enzyme, and that the nature of the signal sequence has a limited effect on the yield of the secreted enzyme, with the T. stipitatus FAEC signal sequence producing 297 mgL(-1), the Neurospora crassa Fae-1 260 mgL(-1), and the Saccharomyces cerevisiae alpha-factor secretion signal 214 mgL(-1). Mature FAEC contains two internal peptide sequences that correspond with the consensus motif G-X-S-X-G that contains the catalytic serine nucleophile, which is conserved in the esterase enzyme superfamily. The serine residues at the center of these peptide motifs have been independently mutated and the corresponding enzymes have been over-expressed in P. pastoris to identify the candidate nucleophilic residue responsible for catalyzing the enzymatic reaction. Purified recombinant FAEC containing S465A retained the esterase activity and appeared unaffected by the amino acid modification. In contrast, FAEC activity containing S166A was below the HPLC detection limit, suggesting that serine 166 constitutes the nucleophile.
阿魏酸酯酶是一类有趣的酶,在农业食品工业中具有广泛的应用潜力。我们报道了一种来自嗜热栖热放线菌(FAEC)的新型阿魏酸酯酶在毕赤酵母中的过表达及特性。通过各种基因构建,我们研究了使用替代信号肽来产生具有天然酶N端序列的正宗阿魏酸酯酶。我们证明,FAEC序列N端的额外氨基酸不会影响酶的催化能力,信号序列的性质对分泌酶的产量影响有限,嗜热栖热放线菌FAEC信号序列产生297 mgL(-1),粗糙脉孢菌Fae-1为260 mgL(-1),酿酒酵母α-因子分泌信号为214 mgL(-1)。成熟的FAEC包含两个内部肽序列,与含有催化丝氨酸亲核试剂的共有基序G-X-S-X-G相对应,该基序在酯酶超家族中保守。这些肽基序中心的丝氨酸残基已被独立突变,相应的酶已在毕赤酵母中过表达,以鉴定负责催化酶促反应的候选亲核残基。含有S465A的纯化重组FAEC保留了酯酶活性,且似乎不受氨基酸修饰的影响。相比之下,含有S166A的FAEC活性低于HPLC检测限,表明丝氨酸166构成亲核试剂。