Determination of the crystal structure and substrate specificity of ananain

被引:9
作者
Tang Yongqing [1 ,3 ]
Wilmann, Pascal G. [4 ]
Pan, Jing [1 ]
West, Michael L. [3 ]
Brown, Tracey J. [3 ]
Mynott, Tracey [3 ]
Pike, Robert N. [1 ,2 ]
Wijeyewickrema, Lakshmi C. [1 ,2 ]
机构
[1] La Trobe Univ, La Trobe Inst Mol Sci, Dept Biochem & Genet, Melbourne, Vic, Australia
[2] ARC Ctr Excellence Adv Mol Imaging, Melbourne, Vic, Australia
[3] Anatara Lifesci Ltd, Brisbane, Qld, Australia
[4] Monash Biomed Discovery Inst, Fac Med Nursing & Hlth Sci, Melbourne, Vic, Australia
基金
澳大利亚研究理事会;
关键词
Cysteine protease; Ananain; Substrate specificity; AMINO-ACID-SEQUENCE; CYSTEINE PROTEINASES; PURIFICATION; BROMELAIN; STABILITY; COMPLEX; SYSTEM;
D O I
10.1016/j.biochi.2019.07.011
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Ananain (EC 3.4.22.31) accounts for less than 10% of the total enzyme in the crude pineapple stem extract known as bromelain, yet yields the majority of the proteolytic activity of bromelain. Despite a high degree of sequence identity between ananain and stem bromelain, the most abundant bromelain cysteine protease, ananain displays distinct chemical properties, substrate preference and inhibitory profile compared to stem bromelain. A tripeptidyl substrate library (REPLi) was used to further characterize the substrate specificity of ananain and identified an optimal substrate for cleavage by ananain. The optimal tripeptide, PLQ yielded a high k(cat)/K-m value of 1.7 x 106 M-1 s(-1), with cleavage confirmed to occur after the Gln residue. Crystal structures of unbound ananain and an inhibitory complex of ananain and E-64, solved at 1.73 and 1.98 A, respectively, revealed a geometrically flat and open S1 subsite for ananain. This subsite accommodates diverse P1 substrate residues, while a narrow and deep hydrophobic pocket-like S2 subsite would accommodate a non-polar P2 residue, such as the preferred Leu residue observed in the specificity studies. A further illustration of the atomic interactions between E-64 and ananain explains the high inhibitory efficiency of E-64 toward ananain. These data reveal the first in depth structural and functional data for ananain and provide a basis for further study of the natural properties of the enzyme. (C) 2019 Elsevier B.V. and Societe Francaise de Biochimie et Biologie Moleculaire (SFBBM). All rights reserved.
引用
收藏
页码:194 / 202
页数:9
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