School of Mathematical Sciences, Fudan University, Shanghai, China.
PLoS One. 2022 Feb 4;17(2):e0263286. doi: 10.1371/journal.pone.0263286. eCollection 2022.
The symport of lactose and H+ is an important physiological process in E. coli, for it is closely related to cellular energy supply. In this paper, we review, extend and analyse a newly proposed cotransport model that takes the "leakage" phenomenon (uncoupled particle translocation) into account and also satisfies the static head equilibrium condition. Then, we use the model to study the equilibrium properties, including equilibrium solution and the time required to reach equilibrium, of the symport process of E. coli LacY protein, when varying the parameters of the initial state of cotransport system. It can be found that in our extended model, H+ and lactose will reach their equilibrium state separately, and when "leakage" exists, it linearly affects the equilibrium solution, which is a useful property that the original model does not have. We later investigated the effect of the volume of periplasm and cytoplasm on the equilibrium properties. For a certain E. coli cell, as it continues to lose water and contract, the time for cytoplasm pH to be stabilized by symport increases monotonically when the cell survives. Finally, we reproduce the experimental data from a literature to verify the validity of the extension in this symport process. The above phenomena and other findings in this paper may help us to not only further validate or improve the model, but also deepen our understanding of the cotransport process of E. coli LacY protein.
乳糖和 H+的共转运是大肠杆菌中的一个重要生理过程,因为它与细胞能量供应密切相关。在本文中,我们回顾、扩展和分析了一个新提出的共转运模型,该模型考虑了“泄漏”现象(无耦合粒子易位),并且满足静态头部平衡条件。然后,我们使用该模型研究了大肠杆菌 LacY 蛋白共转运过程的平衡特性,包括平衡解和达到平衡所需的时间,同时改变共转运系统初始状态的参数。可以发现,在我们扩展的模型中,H+和乳糖将分别达到其平衡状态,并且当存在“泄漏”时,它会线性影响平衡解,这是原始模型所没有的有用特性。我们随后研究了周质和细胞质体积对平衡特性的影响。对于特定的大肠杆菌细胞,随着细胞不断失水和收缩,当细胞存活时,通过共转运使细胞质 pH 稳定的时间会单调增加。最后,我们再现了文献中的实验数据,以验证该共转运过程扩展的有效性。本文中的上述现象和其他发现不仅有助于我们进一步验证或改进该模型,还有助于我们加深对大肠杆菌 LacY 蛋白共转运过程的理解。