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Effects of Detergents on Activity, Thermostability and Aggregation of Two Alkalithermophilic Lipases from Thermosyntropha lipolytica

机译:洗涤剂对脂解嗜热合成嗜碱菌的两种嗜碱脂肪酶的活性,热稳定性和聚集的影响

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摘要

Thermosyntropha lipolytica DSM 11003, an anaerobic thermophilic lipolytic bacterium, produces the two alkalithermophilic lipases, LipA and LipB. Among all tested detergents, the two lipases were mostly affected by SDS when used at concentrations below its critical micelle concentration (CMC). In the absence of SDS, the vmax of both LipA and LipB were 12.6 U·mg-1 and 13.3 U·mg-1 and K0.5 were 1.8 mM and 1.65 mM, respectively at 96°C and pHopt25ºCof 9.4-9.6. In the presence of 0.2% SDS, the vmax increased to 105 U·mg-1 and 112 U·mg-1, and K0.5 values decreased to 200 µM and 140 µM for LipA and LipB, respectively. Inhibitory assays of lipases using diisopropyl p-nitrophenylphosphate (E600) with increasing concentration of SDS and Tween 20 strongly suggest that SDS and Tween 20 do bind to the lid domain and/or active site pocket, thus promoting conformational changes that facilitate active site accessibility for the substrate. The two lipases exhibited moderate activation in the presence of nonionic detergents when used below their CMC values. Both lipases were found to exhibit strong tendency to aggregate as observed through gel filtration chromatography and gradient native gel electrophoresis. The addition of 1.0% (w/v) SDS led to disaggregation as the lipases were eluted corresponding to their monomeric mass (based on SDS gel electrophoresis value) and caused a significant decrease in thermostability, suggesting that, enzyme aggregation might be a major contributor to the high thermostability of LipA and LipB.
机译:嗜热嗜热脂肪分解菌DSM 11003是一种厌氧嗜热解脂细菌,可产生两种碱热亲脂酶LipA和LipB。在所有测试的去污剂中,当以低于其临界胶束浓度(CMC)的浓度使用时,两种脂肪酶受SDS的影响最大。在没有SDS的情况下,LipA和LipB的vmax分别为96°C和pHopt25°C(9.4-9.6)时为12.6 U·mg-1和13.3 U·mg-1,K0.5分别为1.8 mM和1.65 mM。在存在0.2%SDS的情况下,对于LipA和LipB,vmax分别增至105 U·mg-1和112 U·mg-1,K0.5值分别降至200 µM和140 µM。使用浓度增加的SDS和Tween 20的二异丙基对硝基苯基磷酸二甲酯(E600)进行的脂肪酶抑制分析强烈表明SDS和Tween 20确实与盖结构域和/或活性位点口袋结合,从而促进构象变化,从而促进了活性位点的可及性基板。当在其CMC值以下使用时,两种脂肪酶在非离子型去污剂的存在下表现出中等程度的活化作用。如通过凝胶过滤色谱法和梯度天然凝胶电泳所观察到的,发现两种脂肪酶都表现出强烈的聚集趋势。添加1.0%(w / v)的SDS会导致解聚,因为脂肪酶的洗脱对应于其单体质量(基于SDS凝胶电泳值)并导致热稳定性显着降低,这表明酶的聚集可能是主要的原因对LipA和LipB具有很高的热稳定性。

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