Department of Microbiology and Cell Science, University of Florida, Gainesville, FL 32611-0700, USA.
Biochem J. 2012 Jul 15;445(2):193-203. doi: 10.1042/BJ20112113.
The uncharacterized α/β-hydrolase protein OLEI01171 from the psychrophilic marine bacterium Oleispira antarctica belongs to the PF00756 family of putative esterases, which also includes human esterase D. In the present paper we show that purified recombinant OLEI01171 exhibits high esterase activity against the model esterase substrate α-naphthyl acetate at 5-30°C with maximal activity at 15-20°C. The esterase activity of OLEI01171 was stimulated 3-8-fold by the addition of chloride or several other anions (0.1-1.0 M). Compared with mesophilic PF00756 esterases, OLEI01171 exhibited a lower overall protein thermostability. Two crystal structures of OLEI01171 were solved at 1.75 and 2.1 Å resolution and revealed a classical serine hydrolase catalytic triad and the presence of a chloride or bromide ion bound in the active site close to the catalytic Ser148. Both anions were found to co-ordinate a potential catalytic water molecule located in the vicinity of the catalytic triad His257. The results of the present study suggest that the bound anion perhaps contributes to the polarization of the catalytic water molecule and increases the rate of the hydrolysis of an acyl-enzyme intermediate. Alanine replacement mutagenesis of OLEI01171 identified ten amino acid residues important for esterase activity. The replacement of Asn225 by lysine had no significant effect on the activity or thermostability of OLEI01171, but resulted in a detectable increase of activity at 35-45°C. The present study has provided insight into the molecular mechanisms of activity of a cold-active and anion-activated carboxyl esterase.
来自嗜冷海洋细菌南极海洋杆菌的未表征的 α/β-水解酶蛋白 OLEI01171 属于假定酯酶的 PF00756 家族,其中还包括人类酯酶 D。在本文中,我们表明纯化的重组 OLEI01171 在 5-30°C 下对模型酯酶底物 α-萘乙酸酯表现出高酯酶活性,在 15-20°C 时活性最高。OLEI01171 的酯酶活性通过添加氯离子或其他几种阴离子(0.1-1.0 M)可被刺激 3-8 倍。与嗜温 PF00756 酯酶相比,OLEI01171 的整体蛋白质热稳定性较低。OLEI01171 的两个晶体结构分别在 1.75 和 2.1 Å 的分辨率下解决,揭示了一个经典的丝氨酸水解酶催化三联体和一个结合在活性位点的氯离子或溴离子,靠近催化 Ser148。这两种阴离子都被发现与位于催化三联体 His257 附近的潜在催化水分子配位。本研究的结果表明,结合的阴离子可能有助于催化水分子的极化,并提高酰基-酶中间物的水解速率。OLEI01171 的丙氨酸替换突变鉴定了对酯酶活性重要的十个氨基酸残基。用赖氨酸取代天冬酰胺 225 对 OLEI01171 的活性或热稳定性没有显著影响,但导致在 35-45°C 时活性可检测增加。本研究提供了对冷活性和阴离子激活的羧酸酯酶活性的分子机制的深入了解。