Olson C Anders, Liao Hsiang-I, Sun Ren, Roberts Richard W
Biochemistry and Molecular Biophysics Option, California Institute of Technology, Pasadena, California 91125, USA.
ACS Chem Biol. 2008 Aug 15;3(8):480-5. doi: 10.1021/cb800069c. Epub 2008 Jul 1.
The complexity of the human proteome is greatly expanded by post-translational modifications. New tools capable of recognizing these modifications in a sequence-specific fashion provide a route to purify these modified proteins, to alter protein trafficking, and to visualize signal transduction in real time. Here, we have evolved novel, modification-specific ligands that target phosphorylated IkappaBalpha. To do this, we employed mRNA display-based in vitro selection using a 30-trillion-member protein library based on the fibronectin type III domain. The selection yielded one fibronectin molecule, 10C17C25, that binds a phospho-IkappaBalpha peptide with K d = 18 nM and is over 1000-fold specific compared to the nonphosphorylated peptide. 10C17C25 specifically recognizes endogenous phosphorylated IkappaBalpha from mammalian cell extract and stabilizes phospho-IkappaBalpha in vivo. We also incorporated 10C17C25 into a FRET indicator that detects IkappaB kinase (IKK) activity in vitro, demonstrating the utility of selecting designed adaptors for kinase activity sensors.
翻译后修饰极大地扩展了人类蛋白质组的复杂性。能够以序列特异性方式识别这些修饰的新工具为纯化这些修饰蛋白、改变蛋白质运输以及实时可视化信号转导提供了途径。在此,我们研发出了靶向磷酸化IκBα的新型、修饰特异性配体。为此,我们基于纤连蛋白III型结构域,利用基于mRNA展示的体外筛选技术,从一个包含30万亿个成员的蛋白质文库中进行筛选。筛选得到了一个纤连蛋白分子10C17C25,它与磷酸化IκBα肽结合的解离常数Kd = 18 nM,与非磷酸化肽相比,特异性超过1000倍。10C17C25能特异性识别来自哺乳动物细胞提取物的内源性磷酸化IκBα,并在体内稳定磷酸化IκBα。我们还将10C17C25整合到一种能在体外检测IκB激酶(IKK)活性的荧光共振能量转移(FRET)指示剂中,证明了为激酶活性传感器筛选设计适配体的实用性。