Sharma Rameshwar K
Unit of Regulatory and Molecular Biology, Salus University, Elkins Park, PA, United States.
Front Mol Neurosci. 2022 Aug 9;15:929396. doi: 10.3389/fnmol.2022.929396. eCollection 2022.
The membrane guanylate cyclase (MGC) cellular signaling pathway consists of seven signaling pathways and is critical for the survival of prokaryotes eukaryotes, and highly complex vertebrate organisms. A sequel to the author's earlier comprehensive reviews, covering the field of MGC from its origin to its establishment to the year 2014, this article exclusively deals with the history of its development from the year 1963 to 1987. It narrates the efforts involved in building on small projects, brick by brick, and its emergence from the chasm of disbelief, through steady, continuous work. To make the presentation simple and chronologically continuous, the subject matters of the earlier reviews and publication of these authors have been freely borrowed with appropriate citations.
膜鸟苷酸环化酶(MGC)细胞信号通路由七条信号通路组成,对原核生物、真核生物以及高度复杂的脊椎动物的生存至关重要。本文是作者早期全面综述的续篇,涵盖了MGC领域从起源到2014年的发展历程,专门讲述了其从1963年到1987年的发展历史。它讲述了在一个个小项目基础上一砖一瓦构建的过程,以及通过持续稳定的工作从怀疑的深渊中脱颖而出的历程。为了使呈现简单且按时间顺序连贯,已适当引用这些作者早期综述和出版物中的主题内容。