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刺胞动物和栉水母钙调节无辅基光保护蛋白的热稳定性:比较研究。

Thermostability of Ctenophore and Coelenterate Ca-Regulated Apo-photoproteins: A Comparative Study.

机构信息

Department of Biochemistry, Faculty of Biological Sciences, Tarbiat Modares University, Tehran 14115-154, Iran.

Department of Biophysics, Faculty of Biological Sciences, Tarbiat Modares University, Tehran 14115-154, Iran.

出版信息

ACS Chem Biol. 2021 Aug 20;16(8):1538-1545. doi: 10.1021/acschembio.1c00401. Epub 2021 Jun 28.

Abstract

The stabilities of Ca-regulated ctenophore and coelenterate apo-photoproteins, apo-mnemiopsin (apo-Mne) and apo-aequorin (apo-Aeq), respectively, were compared biochemically, biophysically, and structurally. Despite high degrees of structural and functional conservation, drastic variations in stability and structural dynamics were found between the two proteins. Irreversible thermoinactivation experiments were performed upon incubation of apo-photoproteins at representative temperatures. The inactivation rate constants () at 50 °C were determined to be 0.001 and 0.004 min for apo-Mne and apo-Aeq, respectively. Detailed analysis of the inactivation process suggests that the higher thermostability of apo-Mne is due to the higher activation energy () and subsequently higher values of Δ* and Δ* at a given temperature. According to molecular dynamics simulation studies, the higher hydrogen bond, electrostatic, and van der Waals energies in apo-Mne can validate the relationship between the thermal adaptation of apo-Mne and the energy barrier for the inactivation process. Our results show that favorable residues for protein thermostability such as hydrophobic, charged, and adopted α-helical structure residues are more frequent in the apo-Mne structure. Although the effect of acrylamide on fluorescence quenching suggests that the local flexibility in regions around Trp and Tyr residues of apo-Aeq is higher than that of apo-Mne, which results in it having a better ability to penetrate acrylamide molecules, the root-mean-square fluctuation of helix A in apo-Mne is higher than that in apo-Aeq. It seems that the greater flexibility of apo-Mne in these regions may be considered as a determining factor, affecting the thermal stability of apo-Mne through a balance between structural rigidity and flexibility.

摘要

分别比较了钙调节栉水母和腔肠动物脱辅基光蛋白(apo-Mne)和脱辅基水母发光蛋白(apo-Aeq)的生化、生物物理和结构稳定性。尽管结构和功能高度保守,但这两种蛋白质的稳定性和结构动力学存在明显差异。在代表性温度下孵育脱辅基光蛋白进行不可逆热失活实验。在 50°C 时,确定 apo-Mne 和 apo-Aeq 的失活速率常数(k)分别为 0.001 和 0.004 min。失活过程的详细分析表明,apo-Mne 的较高热稳定性是由于较高的活化能(Ea),进而在给定温度下具有较高的Δ和Δ值。根据分子动力学模拟研究,apo-Mne 中较高的氢键、静电和范德华能可以验证 apo-Mne 的热适应与失活过程的能量障碍之间的关系。我们的结果表明,有利于蛋白质热稳定性的有利残基,如疏水性、带电和采用的α-螺旋结构残基,在 apo-Mne 结构中更为频繁。尽管丙烯酰胺对荧光猝灭的影响表明,apo-Aeq 中色氨酸和酪氨酸残基周围区域的局部灵活性高于 apo-Mne,这导致它具有更好的穿透丙烯酰胺分子的能力,但 apo-Mne 中螺旋 A 的均方根波动高于 apo-Aeq。似乎 apo-Mne 在这些区域的更大灵活性可以被认为是一个决定因素,通过结构刚性和灵活性之间的平衡影响 apo-Mne 的热稳定性。

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