首页> 外文期刊>Biochimica et Biophysica Acta. Protein Structure and Molecular Enzymology >Impact of the tryptophan residues of Humicola lanuginosa lipase on its thermal stability
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Impact of the tryptophan residues of Humicola lanuginosa lipase on its thermal stability

机译:腐植酸脂酶色氨酸残基对其热稳定性的影响

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Thermal stability of wild type Humicola lanuginosa lipase (wt HLL) and its two mutants, W89L and the single Trp mutant W89m (W117F, W221H, and W260H), were compared. Differential scanning calorimetry revealed unfolding of HLL at T_d = 74.4 ℃ whereas for W89L and W89m this endotherm was decreased to 68.6 and 62 ℃, respectively, demonstrating significant contribution of the above Trp residues to the structural stability of HLL. Fluorescence emission spectra revealed the average microenvironment of Trps of wt HLL and W89L to become more hydrophilic at elevated temperatures whereas the opposite was true for W89m. These changes in steady-state emission were sharp, with midpoints (T_m) at approx. 70.5, 61.0, and 65.5 ℃ for wt HLL, W89L, and W89m, respectively. Both steady-state and time resolved fluorescence spectroscopy further indicated that upon increasing temperature, the local movements of tryptophan(s) in these lipases were first attenuated. However, faster mobilities became evident when the unfolding temperatures (T_m) were exceeded, and the lipases became less compact as indicated by the increased hydrodynamic radii. Even at high temperatures (up to 85 ℃) a significant extent of tertiary and secondary structure was revealed by circular dichroism. Activity measurements are in agreement with increased amplitudes of conformational fluctuations of HLL with temperature. Our results also indicate that the thermal unfolding of these lipases is not a two-state process but involve intermediate states. Interestingly, a heating and cooling cycle enhanced the activity of the lipases, suggesting the protein to be trapped in an intermediate, higher energy state. The present data show that the mutations, especially W89L in the lid, contribute significantly to the stability, structure and activity of HLL.
机译:比较了野生型腐殖质脂酶(wt HLL)及其两个突变体W89L和单个Trp突变体W89m(W117F,W221H和W260H)的热稳定性。差示扫描量热法显示T_d = 74.4℃时HLL展开,而W89L和W89m的吸热分别降低至68.6和62℃,表明上述Trp残基对HLL的结构稳定性有重要贡献。荧光发射光谱表明,wt HLL和W89L的Trp的平均微环境在升高的温度下变得更加亲水,而W89m则相反。稳态发射的这些变化非常明显,中点(T_m)约为。 wt HLL,W89L和W89m分别为70.5、61.0和65.5℃。稳态和时间分辨荧光光谱都进一步表明,随着温度的升高,这些脂肪酶中色氨酸的局部运动首先被减弱。但是,当超过展开温度(T_m)时,流动性变得更快,并且脂肪酶的致密性降低,如流体动力学半径增加所表明的。即使在高温(高达85℃)下,圆二色性也显示出很大程度的三级和二级结构。活性测量与HLL的构象波动幅度随温度增加而一致。我们的结果还表明,这些脂肪酶的热解不是两个过程,而是涉及中间状态。有趣的是,加热和冷却循环增强了脂肪酶的活性,表明蛋白质被困在较高能量的中间状态。目前的数据表明,突变,特别是盖子中的W89L,对HLL的稳定性,结构和活性有显着贡献。

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