Institute of Biomechanics, School of Biology and Biological Engineering, South China University of Technology, Guangzhou 510006, China.
Molecules. 2023 May 22;28(10):4224. doi: 10.3390/molecules28104224.
Cancer cells can evade immune surveillance through binding of its transmembrane receptor CD47 to CD172a on myeloid cells. CD47 is recognized as a promising immune checkpoint for cancer immunotherapy inhibiting macrophage phagocytosis. -terminal post-translated modification (PTM) via glutaminyl cyclase is a landmark event in CD47 function maturation, but the molecular mechanism underlying the mechano-chemical regulation of the modification on CD47/CD172a remains unclear. Here, we performed so-called "ramp-clamp" steered molecular dynamics (SMD) simulations, and found that the -terminal PTM enhanced interaction of CD172a with CD47 by inducing a dynamics-driven contraction of the binding pocket of the bound CD172a, an additional constraint on CYS15 on CD47 significantly improved the tensile strength of the complex with or without PTM, and a catch bond phenomenon would occur in complex dissociation under tensile force of 25 pN in a PTM-independent manner too. The residues GLN52 and SER66 on CD172a reinforced the H-bonding with their partners on CD47 in responding to PTM, while ARG69 on CD172 with its partner on CD47 might be crucial in the structural stability of the complex. This work might serve as molecular basis for the PTM-induced function improvement of CD47, should be helpful for deeply understanding CD47-relevant immune response and cancer development, and provides a novel insight in developing of new strategies of immunotherapy targeting this molecule interaction.
癌细胞可以通过其跨膜受体 CD47 与髓样细胞上的 CD172a 结合来逃避免疫监视。CD47 被认为是一种很有前途的免疫检查点,可以抑制巨噬细胞吞噬作用,用于癌症免疫治疗。通过谷氨酰胺环化酶进行 C 端翻译后修饰(PTM)是 CD47 功能成熟的一个标志性事件,但 CD47/CD172a 上的机械化学调节修饰的分子机制尚不清楚。在这里,我们进行了所谓的“斜坡-箝位”导向分子动力学(SMD)模拟,发现 C 端 PTM 通过诱导结合的 CD172a 的结合口袋的动力学驱动收缩,增强了 CD172a 与 CD47 的相互作用,对 CD47 上的 CYS15 的额外约束显著提高了 PTM 或无 PTM 时的复合物的拉伸强度,并且在没有 PTM 的情况下,在 25 pN 的拉伸力下,也会发生捕获键现象。CD172a 上的 GLN52 和 SER66 残基在响应 PTM 时增强了与 CD47 上的配体的氢键相互作用,而 CD172 上的 ARG69 及其与 CD47 上的配体可能对复合物的结构稳定性至关重要。这项工作可能为 CD47 诱导的功能改善提供分子基础,有助于深入了解 CD47 相关的免疫反应和癌症发展,并为针对该分子相互作用的免疫治疗新策略提供新的见解。