Biophysics Department, Siberian Federal University, 660041 Krasnoyarsk, Russia.
Institute of Protein Research, Russian Academy of Sciences, 142290 Pushchino, Russia.
Int J Mol Sci. 2022 Jul 23;23(15):8119. doi: 10.3390/ijms23158119.
The evaluation of temperature effects on the structure and function of enzymes is necessary to understand the mechanisms underlying their adaptation to a constantly changing environment. In the current study, we investigated the influence of temperature variation on the activity, structural dynamics, thermal inactivation and denaturation of and luciferases belonging to different subfamilies, as well as the role of sucrose in maintaining the enzymes functioning and stability. We used the stopped-flow technique, differential scanning calorimetry and molecular dynamics to study the activity, inactivation rate, denaturation and structural features of the enzymes under various temperatures. It was found that luciferase resembles the properties of cold-adapted enzymes with high activity in a narrow temperature range and slightly lower thermal stability than luciferase, which is less active, but more thermostable. Differences in activity at the studied temperatures can be associated with the peculiarities of the mobile loop conformational changes. The presence of sucrose does not provide an advantage in activity but increases the stability of the enzymes. Differential scanning calorimetry experiments showed that luciferases probably follow different denaturation schemes.
评估温度对酶的结构和功能的影响对于理解其适应不断变化的环境的机制是必要的。在本研究中,我们研究了温度变化对属于不同亚家族的 和 荧光素酶的活性、结构动力学、热失活和变性的影响,以及蔗糖在维持酶的功能和稳定性方面的作用。我们使用停流技术、差示扫描量热法和分子动力学研究了在不同温度下酶的活性、失活速率、变性和结构特征。结果表明, 荧光素酶具有与低温适应酶相似的性质,在较窄的温度范围内具有高活性,热稳定性略低于 荧光素酶,后者活性较低,但热稳定性较高。在研究温度下的活性差异可能与可移动环构象变化的特点有关。蔗糖的存在并不能提供活性优势,但能提高酶的稳定性。差示扫描量热法实验表明,荧光素酶可能遵循不同的变性方案。