Stennicke H R, Mortensen U H, Christensen U, Remington S J, Breddam K
Carlsberg Laboratory, Department of Chemistry, Copenhagen, Denmark.
Protein Eng. 1994 Jul;7(7):911-6. doi: 10.1093/protein/7.7.911.
Carboxypeptidase Y is a serine carboxypeptidase isolated from Saccharomyces cerevisiae with a preference for C-terminal hydrophobic amino acid residues. In order to alter the inherent substrate specificity of CPD-Y into one for basic amino acid residues in P'1, we have introduced Asp and/or Glu residues at a number of selected positions within the S'1 binding site. The effects of these substitutions on the substrate specificity, pH dependence and protein stability have been evaluated. The results presented here demonstrate that it is possible to obtain significant changes in the substrate preference by introducing charged amino acids into the framework provided by an enzyme with a quite different specificity. The introduced acidic amino acid residues provide a marked pH dependence of the (kcat/Km)FA-A-R-OH/(kcat/Km)FA-A-L-OH ratio. The change in stability upon introduction of Asp/Glu residues can be correlated to the difference in the mean buried surface area between the substituted and the substituting amino acid. Thus, the effects of acidic amino acid residues on the protein stability depend upon whether the introduced amino acid protrudes from the solvent accessible surface as defined by the surrounding residues in the wild type enzyme or is submerged below.
羧肽酶Y是一种从酿酒酵母中分离出来的丝氨酸羧肽酶,它优先作用于C端疏水氨基酸残基。为了将羧肽酶Y固有的底物特异性改变为对P'1中碱性氨基酸残基的特异性,我们在S'1结合位点内的多个选定位置引入了天冬氨酸和/或谷氨酸残基。评估了这些取代对底物特异性、pH依赖性和蛋白质稳定性的影响。此处给出的结果表明,通过将带电荷的氨基酸引入具有截然不同特异性的酶所提供的框架中,有可能在底物偏好方面获得显著变化。引入的酸性氨基酸残基使(kcat/Km)FA-A-R-OH/(kcat/Km)FA-A-L-OH比值呈现出明显的pH依赖性。引入天冬氨酸/谷氨酸残基后稳定性的变化与取代氨基酸和被取代氨基酸之间平均埋藏表面积的差异相关。因此,酸性氨基酸残基对蛋白质稳定性的影响取决于引入的氨基酸是从野生型酶中周围残基所定义的溶剂可及表面突出还是被埋在其下。