Hernández-García Manuel Eduardo, Velázquez-Castro Jorge
Benemérita Universidad Autónoma de Puebla, Facultad de Ciencias Físico-Matemáticas, Avenida San Claudio y 18 Sur, Col. San Manuel, Heroica Puebla de Zaragoza, Puebla 72570, México.
ACS Omega. 2025 Apr 1;10(14):13906-13914. doi: 10.1021/acsomega.4c09418. eCollection 2025 Apr 15.
The Hill function is relevant for describing enzyme binding and other processes in gene regulatory networks. Despite its theoretical foundation, based on the mechanism of ligand-receptor binding, it is often used as a proper fitting function with a noninteger Hill coefficient in the description of gene expression. In this study, we explicitly considered intermediate processes in the transcription factor binding sites and mesoscopic concentration fluctuations, which, in contrast to the case of a single binding site without conformal states or all-or-none binding, lead to a noninteger Hill coefficient for the transcription rate. The relationships between the intermediate processes and the decimal Hill coefficient were established through a direct relationship between the dissociation constants, both with and without fluctuations. This outcome contributes to a deeper understanding of the underlying processes associated with the decimal Hill coefficient of gene expression rates while also enabling the prediction of an effective value of the Hill coefficient from the underlying mechanism. This procedure provides a simplified and effective description of the complex mechanisms that underlie gene expression.
希尔函数在描述基因调控网络中的酶结合及其他过程时具有相关性。尽管其基于配体 - 受体结合机制有理论基础,但在基因表达的描述中,它常被用作具有非整数希尔系数的合适拟合函数。在本研究中,我们明确考虑了转录因子结合位点的中间过程和介观浓度波动,与没有共形状态或全或无结合的单个结合位点的情况相反,这导致转录速率的希尔系数为非整数。通过有波动和无波动时解离常数之间的直接关系,建立了中间过程与十进制希尔系数之间的关系。这一结果有助于更深入地理解与基因表达速率的十进制希尔系数相关的潜在过程,同时还能从潜在机制预测希尔系数的有效值。该过程为基因表达背后的复杂机制提供了一种简化且有效的描述。