Department of Chemical Engineering, University of New Hampshire, Durham, NH, United States.
Front Endocrinol (Lausanne). 2022 Jun 20;13:908724. doi: 10.3389/fendo.2022.908724. eCollection 2022.
Insulin is a peptide hormone known for chiefly regulating glucose level in blood among several other metabolic processes. Insulin remains the most effective drug for treating diabetes mellitus. Insulin is synthesized in the pancreatic β-cells where it exists in a compact hexameric architecture although its biologically active form is monomeric. Insulin exhibits a sequence of conformational variations during the transition from the hexamer state to its biologically-active monomer state. The structural transitions and the mechanism of action of insulin have been investigated using several experimental and computational methods. This review primarily highlights the contributions of molecular dynamics (MD) simulations in elucidating the atomic-level details of conformational dynamics in insulin, where the structure of the hormone has been probed as a monomer, dimer, and hexamer. The effect of solvent, pH, temperature, and pressure have been probed at the microscopic scale. Given the focus of this review on the structure of the hormone, simulation studies involving interactions between the hormone and its receptor are only briefly highlighted, and studies on other related peptides (e.g., insulin-like growth factors) are not discussed. However, the review highlights conformational dynamics underlying the activities of reported insulin analogs and mimetics. The future prospects for computational methods in developing promising synthetic insulin analogs are also briefly highlighted.
胰岛素是一种肽类激素,主要作用是调节血液中的葡萄糖水平,同时还参与其他几种代谢过程。胰岛素仍然是治疗糖尿病的最有效药物。胰岛素在胰腺β细胞中合成,虽然其生物活性形式是单体,但它以紧密的六聚体结构存在。胰岛素在从六聚体状态向其生物活性单体状态的转变过程中表现出一系列构象变化。已经使用多种实验和计算方法研究了胰岛素的结构转变和作用机制。这篇综述主要强调了分子动力学 (MD) 模拟在阐明胰岛素构象动力学原子水平细节方面的贡献,其中研究了激素作为单体、二聚体和六聚体的结构。还在微观尺度上研究了溶剂、pH 值、温度和压力的影响。鉴于这篇综述的重点是激素的结构,因此仅简要强调了涉及激素与其受体相互作用的模拟研究,而未讨论其他相关肽(例如胰岛素样生长因子)的研究。然而,该综述强调了报道的胰岛素类似物和模拟物活性背后的构象动力学。还简要强调了计算方法在开发有前途的合成胰岛素类似物方面的未来前景。