Lavrinenko Igor A, Vashanov Gennady A, Hernández Cáceres José L, Buchelnikov Anatoly S, Nechipurenko Yury D
Department of Human and Animal Physiology, Voronezh State University, Universitetskaya Sq. 1, 394018 Voronezh, Russia.
Cuban Neuroscience Center, 15202 Avenida 25, Playa, La Habana 11600, Cuba.
Entropy (Basel). 2022 Aug 30;24(9):1214. doi: 10.3390/e24091214.
The study of hemoglobin oxygenation, starting from the classical works of Hill, has laid the foundation for molecular biophysics. The cooperative nature of oxygen binding to hemoglobin has been variously described in different models. In the Adair model, which better fits the experimental data, the constants of oxygen binding at various stages differ. However, the physical meaning of the parameters in this model remains unclear. In this work, we applied Hill's approach, extending its interpretation; we obtained a good agreement between the theory and the experiment. The equation in which the Hill coefficient is modulated by the Lorentz distribution for oxygen partial pressure approximates the experimental data better than not only the classical Hill equation, but also the Adair equation.
从希尔的经典著作开始,对血红蛋白氧合作用的研究为分子生物物理学奠定了基础。氧与血红蛋白结合的协同性质在不同模型中有多种描述。在更符合实验数据的阿代尔模型中,各个阶段的氧结合常数有所不同。然而,该模型中参数的物理意义仍不明确。在这项工作中,我们应用了希尔的方法并扩展了其解释;我们在理论和实验之间取得了良好的一致性。其中希尔系数由氧分压的洛伦兹分布调节的方程,不仅比经典的希尔方程,而且比阿代尔方程更能近似实验数据。