蛋白质组
计算生物学
免疫球蛋白结构域
生物
结构母题
模块化设计
蛋白质工程
功能多样性
蛋白质结构域
结构塑性
折叠(高阶函数)
抗体
遗传学
计算机科学
生物化学
基因
神经科学
生态学
程序设计语言
酶
操作系统
作者
Caesar Tawfeeq,James Song,Umesh Khaniya,Thomas Madej,Jiyao Wang,Philippe Youkharibache,Erik Serrano
出处
期刊:Advances in protein chemistry and structural biology
日期:2024-01-01
卷期号:: 135-178
被引量:1
标识
DOI:10.1016/bs.apcsb.2023.11.002
摘要
The immunoglobulin fold (Ig fold) domain is a super-secondary structural motif consisting of a sandwich with two layers of β-sheets that is present in many proteins with very diverse biological functions covering a wide range of physiological processes. This domain presents a modular architecture built with β strands connected by variable length loops that has a highly conserved structural core of four β-strands and quite variable β-sheet extensions in the two sandwich layers that enable both divergent and convergent evolutionary mechanisms in the known Ig fold proteome. The central role of this Ig fold's structural plasticity in the evolutionary success of antibodies in our immune system is well established. Nature has also utilized this Ig fold in all domains of life in many different physiological contexts that go way beyond the immune system. Here we will present a structural and functional overview of the utilization of the Ig fold in different biological processes and in different cellular contexts to highlight some of the innumerable ways that this structural motif can interact in multidomain proteins to enable their diversity of functions. This includes shareable specific protein structure visualizations behind those functions that serve as starting points for further explorations of the biomolecular interactions spanning the Ig fold proteome. This overview also highlights how this Ig fold is being utilized through natural adaptation, engineering, and even building from scratch for a range of biotechnological applications.
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