Li Zixuan, Moniz Heather, Wang Shuo, Ramiah Annapoorani, Zhang Fuming, Moremen Kelley W, Linhardt Robert J, Sharp Joshua S
From the Complex Carbohydrate Research Center, University of Georgia, Athens, Georgia 30602 and.
the Department of Chemical and Biological Engineering, Center for Biotechnology and Interdisciplinary Studies, Rensselaer Polytechnic Institute, Troy, New York 12180.
J Biol Chem. 2015 Apr 24;290(17):10729-40. doi: 10.1074/jbc.M115.648410. Epub 2015 Mar 9.
Interaction of transmembrane receptors of the Robo family and the secreted protein Slit provides important signals in the development of the central nervous system and regulation of axonal midline crossing. Heparan sulfate, a sulfated linear polysaccharide modified in a complex variety of ways, serves as an essential co-receptor in Slit-Robo signaling. Previous studies have shown that closely related heparin octasaccharides bind to Drosophila Robo directly, and surface plasmon resonance analysis revealed that Robo1 binds more tightly to full-length unfractionated heparin. For the first time, we utilized electron transfer dissociation-based high spatial resolution hydroxyl radical protein footprinting to identify two separate binding sites for heparin interaction with Robo1: one binding site at the previously identified site for heparin dp8 and a second binding site at the N terminus of Robo1 that is disordered in the x-ray crystal structure. Mutagenesis of the identified N-terminal binding site exhibited a decrease in binding affinity as measured by surface plasmon resonance and heparin affinity chromatography. Footprinting also indicated that heparin binding induces a minor change in the conformation and/or dynamics of the Ig2 domain, but no major conformational changes were detected. These results indicate a second low affinity binding site in the Robo-Slit complex as well as suggesting the role of the Ig2 domain of Robo1 in heparin-mediated signal transduction. This study also marks the first use of electron transfer dissociation-based high spatial resolution hydroxyl radical protein footprinting, which shows great utility for the characterization of protein-carbohydrate complexes.
Robo家族的跨膜受体与分泌蛋白Slit之间的相互作用在中枢神经系统发育和轴突中线交叉调节中提供重要信号。硫酸乙酰肝素是一种经过多种复杂方式修饰的硫酸化线性多糖,在Slit-Robo信号传导中作为必需的共受体。先前的研究表明,密切相关的肝素八糖可直接与果蝇Robo结合,表面等离子体共振分析显示Robo1与全长未分级肝素结合更紧密。我们首次利用基于电子转移解离的高空间分辨率羟基自由基蛋白足迹法,确定了肝素与Robo1相互作用的两个独立结合位点:一个结合位点在先前确定的肝素dp8结合位点,另一个结合位点在Robo1的N端,该位点在X射线晶体结构中无序。通过表面等离子体共振和肝素亲和色谱法测定,对确定的N端结合位点进行诱变后,结合亲和力降低。足迹法还表明,肝素结合会导致Ig2结构域的构象和/或动力学发生微小变化,但未检测到重大构象变化。这些结果表明在Robo-Slit复合物中存在第二个低亲和力结合位点,并暗示了Robo1的Ig2结构域在肝素介导的信号转导中的作用。本研究还标志着首次使用基于电子转移解离的高空间分辨率羟基自由基蛋白足迹法,该方法在表征蛋白质-碳水化合物复合物方面显示出巨大的实用性。