Department of Biomedical Sciences, James H. Quillen College of Medicine, East Tennessee State University, Johnson City, Tennessee, USA.
Protein Sci. 2013 May;22(5):577-85. doi: 10.1002/pro.2239. Epub 2013 Mar 26.
The serine protease enteropeptidase exhibits a high level of substrate specificity for the cleavage sequence DDDDK∼ X, making this enzyme a useful tool for the separation of recombinant protein fusion domains. In an effort to improve the utility of enteropeptidase for processing fusion proteins and to better understand its structure and function, two substitution variants of human enteropeptidase, designated R96Q and Y174R, were created and produced as active (>92%) enzymes secreted by Pichia pastoris with yields in excess of 1.7 mg/Liter. The Y174R variant showed improved specificities for substrates containing the sequences DDDDK (kcat /KM = 6.83 × 10⁶ M⁻¹ sec⁻¹) and DDDDR (kcat /KM = 1.89 × 10⁷ M⁻¹ sec⁻¹) relative to all other enteropeptidase variants reported to date. BPTI inhibition of Y174R was significantly decreased. Kinetic data demonstrate the important contribution of the positively charged residue 96 to extended substrate specificity in human enteropeptidase. Modeling shows the importance of the charge-charge interactions in the extended substrate binding pocket.
丝氨酸蛋白酶肠肽酶对切割序列 DDDDK∼X 表现出高度的底物特异性,使这种酶成为分离重组蛋白融合结构域的有用工具。为了提高肠肽酶对处理融合蛋白的实用性,并更好地了解其结构和功能,我们设计并产生了两种人肠肽酶的替代变体,分别命名为 R96Q 和 Y174R,并作为活性(>92%)的酶由毕赤酵母分泌,产量超过 1.7mg/L。与迄今为止报道的所有其他肠肽酶变体相比,Y174R 变体对包含序列 DDDDK(kcat /KM = 6.83×106 M-1 sec-1)和 DDDDR(kcat /KM = 1.89×107 M-1 sec-1)的底物具有更好的特异性。BPTI 对 Y174R 的抑制作用明显降低。动力学数据表明,带正电荷的残基 96 对人肠肽酶的扩展底物特异性有重要贡献。建模表明,在扩展的底物结合口袋中,电荷-电荷相互作用非常重要。