Hiraga Kaori, Soga Ikko, Dansereau John T, Pereira Brian, Derbyshire Victoria, Du Zhenming, Wang Chunyu, Van Roey Patrick, Belfort Georges, Belfort Marlene
Wadsworth Center, New York State Department of Health, 150 New Scotland Avenue, Albany, NY 12208, USA.
J Mol Biol. 2009 Nov 13;393(5):1106-17. doi: 10.1016/j.jmb.2009.08.074. Epub 2009 Sep 8.
Inteins are phylogenetically diverse self-splicing proteins that are of great functional, evolutionary, biotechnological, and medical interest. To address the relationship between intein structure and function, particularly with respect to regulating the splicing reaction, and to groom inteins for application, we developed a phage display system to extend current in vivo selection for enhanced intein function to selection in vitro. We thereby isolated inteins that can function under excursions in temperature, pH, and denaturing environment. Remarkably, most mutations mapped to the surface of the intein, remote from the active site. We chose two mutants with enhanced splicing activity for crystallography, one of which was also subjected to NMR analysis. These studies define a "ripple effect", whereby mutations in peripheral non-catalytic residues can cause subtle allosteric changes in the active-site environment in a way that facilitates intein activity. Altered salt-bridge formation and chemical shift changes of the mutant inteins provide a molecular rationale for their phenotypes. These fundamental insights will advance the utility of inteins in chemical biology, biotechnology, and medicine.
内含肽是系统发育上多样的自我剪接蛋白,具有重要的功能、进化、生物技术和医学研究价值。为了阐明内含肽结构与功能之间的关系,特别是关于调控剪接反应的关系,并优化内含肽以用于实际应用,我们开发了一种噬菌体展示系统,将目前用于增强内含肽功能的体内筛选扩展到体外筛选。通过该系统,我们分离出了能够在温度、pH值变化以及变性环境下发挥功能的内含肽。值得注意的是,大多数突变位于内含肽的表面,远离活性位点。我们选择了两个剪接活性增强的突变体进行晶体学研究,其中一个还进行了核磁共振分析。这些研究定义了一种“涟漪效应”,即外围非催化残基的突变能够以促进内含肽活性的方式,在活性位点环境中引起微妙的变构变化。突变内含肽盐桥形成的改变和化学位移的变化为其表型提供了分子解释。这些基本见解将推动内含肽在化学生物学、生物技术和医学领域的应用。