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半胱氨酸蛋白酶前肽区域的突变导致活性和特异性改变——一种结构与生化方法

Mutation in the Pro-Peptide Region of a Cysteine Protease Leads to Altered Activity and Specificity-A Structural and Biochemical Approach.

作者信息

Dutta Sruti, Choudhury Debi, Roy Sumana, Dattagupta Jiban Kanti, Biswas Sampa

机构信息

Crystallography and Molecular Biology Division, Saha Institute of Nuclear Physics, 1/AF Bidhannagar, Kolkata, 700 064, India.

出版信息

PLoS One. 2016 Jun 28;11(6):e0158024. doi: 10.1371/journal.pone.0158024. eCollection 2016.

Abstract

Papain-like proteases contain an N-terminal pro-peptide in their zymogen form that is important for correct folding and spatio-temporal regulation of the proteolytic activity of these proteases. Catalytic removal of the pro-peptide is required for the protease to become active. In this study, we have generated three different mutants of papain (I86F, I86L and I86A) by replacing the residue I86 in its pro-peptide region, which blocks the specificity determining S2-subsite of the catalytic cleft of the protease in its zymogen form with a view to investigate the effect of mutation on the catalytic activity of the protease. Steady-state enzyme kinetic analyses of the corresponding mutant proteases with specific peptide substrates show significant alteration of substrate specificity-I86F and I86L have 2.7 and 29.1 times higher kcat/Km values compared to the wild-type against substrates having Phe and Leu at P2 position, respectively, while I86A shows lower catalytic activity against majority of the substrates tested. Far-UV CD scan and molecular mass analyses of the mature form of the mutant proteases reveal similar CD spectra and intact masses to that of the wild-type. Crystal structures of zymogens of I86F and I86L mutants suggest that subtle reorganization of active site residues, including water, upon binding of the pro-peptide may allow the enzyme to achieve discriminatory substrate selectivity and catalytic efficiency. However, accurate and reliable predictions on alteration of substrate specificity require atomic resolution structure of the catalytic domain after zymogen activation, which remains a challenging task. In this study we demonstrate that through single amino acid substitution in pro-peptide, it is possible to modify the substrate specificity of papain and hence the pro-peptide of a protease can also be a useful target for altering its catalytic activity/specificity.

摘要

木瓜蛋白酶样蛋白酶在其酶原形式中含有一个N端前肽,这对于这些蛋白酶的正确折叠和蛋白水解活性的时空调节很重要。蛋白酶要变得活跃,需要催化去除前肽。在本研究中,我们通过替换木瓜蛋白酶前肽区域中的I86残基,生成了三种不同的木瓜蛋白酶突变体(I86F、I86L和I86A),该残基在其酶原形式下会阻断蛋白酶催化裂隙中决定特异性的S2亚位点,以研究突变对蛋白酶催化活性的影响。用特定肽底物对相应突变体蛋白酶进行稳态酶动力学分析,结果表明底物特异性有显著改变——与野生型相比,I86F和I86L对P2位置含有苯丙氨酸和亮氨酸的底物的kcat/Km值分别高出2.7倍和29.1倍,而I86A对大多数测试底物的催化活性较低。对突变体蛋白酶成熟形式的远紫外圆二色扫描和分子量分析显示,其圆二色谱和完整质量与野生型相似。I86F和I86L突变体酶原的晶体结构表明,前肽结合后活性位点残基(包括水)的细微重组可能使酶实现有区别的底物选择性和催化效率。然而,对底物特异性改变进行准确可靠的预测需要酶原激活后催化结构域的原子分辨率结构,这仍然是一项具有挑战性的任务。在本研究中,我们证明通过在前肽中进行单氨基酸取代,可以改变木瓜蛋白酶的底物特异性,因此蛋白酶的前肽也可能是改变其催化活性/特异性的有用靶点。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5387/4924875/07c849407ece/pone.0158024.g001.jpg

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