Singh Mrityunjay K, Manoj Narayanan
Department of Biotechnology, Bhupat and Jyoti Mehta School of Biosciences, Indian Institute of Technology Madras, Chennai, 600036, Tamil Nadu, India.
Proteins. 2017 Apr;85(4):694-708. doi: 10.1002/prot.25249. Epub 2017 Feb 6.
A conserved cis proline residue located in the active site of Thermotoga maritima acetyl esterase (TmAcE) from the carbohydrate esterase family 7 (CE7) has been substituted by alanine. The residue was known to play a crucial role in determining the catalytic properties of the enzyme. To elucidate the structural role of the residue, the crystal structure of the Pro228Ala variant (TmAcE ) was determined at 2.1 Å resolution. The replacement does not affect the overall secondary, tertiary, and quaternary structures and moderately decreases the thermal stability. However, the wild type cis conformation of the 227-228 peptide bond adopts a trans conformation in the variant. Other conformational changes in the tertiary structure are restricted to residues 222-226, preceding this peptide bond and are located away from the active site. Overall, the results suggest that the conserved proline residue is responsible for the cis conformation of the peptide and shapes the geometry of the active site. Elimination of the pyrrolidine ring results in the loss of van der Waals and hydrophobic interactions with both the alcohol and acyl moeities of the ester substrate, leading to significant impairment of the activity and perturbation of substrate specificity. Furthermore, a cis-to-trans conformational change arising out of residue changes at this position may be associated with the evolution of divergent activity, specificity, and stability properties of members constituting the CE7 family. Proteins 2017; 85:694-708. © 2016 Wiley Periodicals, Inc.
来自碳水化合物酯酶家族7(CE7)的嗜热栖热菌乙酰酯酶(TmAcE)活性位点上一个保守的顺式脯氨酸残基已被丙氨酸取代。已知该残基在决定酶的催化特性方面起关键作用。为阐明该残基的结构作用,以2.1 Å分辨率测定了Pro228Ala变体(TmAcE)的晶体结构。这种取代不影响整体的二级、三级和四级结构,并适度降低了热稳定性。然而,227 - 228肽键的野生型顺式构象在变体中采用了反式构象。三级结构中的其他构象变化仅限于该肽键之前的222 - 226残基,且远离活性位点。总体而言,结果表明保守的脯氨酸残基负责肽的顺式构象,并塑造了活性位点的几何形状。吡咯烷环的消除导致与酯底物的醇和酰基部分的范德华力和疏水相互作用丧失,导致活性显著受损和底物特异性受到干扰。此外,该位置残基变化引起的顺式到反式构象变化可能与构成CE7家族成员的不同活性、特异性和稳定性特性的进化有关。《蛋白质》2017年;85:694 - 708。© 2016威利期刊公司