Badasyan Artem, Tonoyan Shushanik, Valant Matjaz, Grdadolnik Joze
University of Nova Gorica, Materials Research Laboratory, Nova Gorica, Slovenia.
Yerevan State University, Department of Molecular Physics, Yerevan, Armenia.
Commun Chem. 2021 May 4;4(1):57. doi: 10.1038/s42004-021-00499-x.
Studies of biopolymer conformations essentially rely on theoretical models that are routinely used to process and analyze experimental data. While modern experiments allow study of single molecules in vivo, corresponding theories date back to the early 1950s and require an essential update to include the recent significant progress in the description of water. The Hamiltonian formulation of the Zimm-Bragg model we propose includes a simplified, yet explicit model of water-polypeptide interactions that transforms into the equivalent implicit description after performing the summation of solvent degrees of freedom in the partition function. Here we show that our model fits very well to the circular dichroism experimental data for both heat and cold denaturation and provides the energies of inter- and intra-molecular H-bonds, unavailable with other processing methods. The revealed delicate balance between these energies determines the conditions for the existence of cold denaturation and thus clarifies its absence in some proteins.
生物聚合物构象的研究主要依赖于常用于处理和分析实验数据的理论模型。虽然现代实验允许在体内研究单分子,但相应的理论可追溯到20世纪50年代初,需要进行必要的更新,以纳入近期在水的描述方面取得的重大进展。我们提出的齐姆 - 布拉格模型的哈密顿表述包括一个简化但明确的水 - 多肽相互作用模型,该模型在对配分函数中的溶剂自由度进行求和后转化为等效的隐式描述。在这里,我们表明我们的模型与热变性和冷变性的圆二色性实验数据拟合得非常好,并提供了分子间和分子内氢键的能量,这是其他处理方法无法获得的。这些能量之间揭示的微妙平衡决定了冷变性存在的条件,从而阐明了某些蛋白质中不存在冷变性的原因。