Tortorella D, Sesardic D, Dawes C S, London E
Department of Biochemistry and Cell Biology, State University of New York, Stony Brook 11794-5215, USA.
J Biol Chem. 1995 Nov 17;270(46):27439-45. doi: 10.1074/jbc.270.46.27439.
Diphtheria toxin is a bacterial protein that undergoes a physiologically critical conformational change at low pH. This change involves a partial unfolding event forming a molten globule-like structure, which exposes hydrophobic regions and which allows the toxin to insert into, and translocate across, membranes. In this report, antibody binding was used to examine the regions of the toxin that undergo structural changes at low pH. Monoclonal antibodies specific to the catalytic (C), transmembrane (T), and receptor-binding (R) domains of diphtheria toxin were prepared and isolated. In addition, the binding of anti-peptide antibodies raised against peptides in the C and T domains to toxin was examined. Anti-C monoclonals and antipeptide antibodies were found to bind preferentially to low pH-treated toxin relative to native toxin. Anti-T and anti-R monoclonal binding ranged between preference for native toxin and preference for low pH-treated toxin. These results suggest that the C domain becomes more exposed to solution at low pH, and that both the T and R domains of the B chain undergo major conformational changes at low pH. Based on these results, a model in which low pH induces several coordinated changes in intra- and inter-domain interactions is suggested. The participation of the R domain in these changes is of particular significance because it suggests that the R domain plays a more important role in low pH-induced changes than previously realized.
白喉毒素是一种细菌蛋白,在低pH值下会发生生理上至关重要的构象变化。这种变化涉及部分展开事件,形成类似熔球的结构,该结构会暴露出疏水区域,并使毒素能够插入膜并跨膜转运。在本报告中,利用抗体结合来检测毒素在低pH值下发生结构变化的区域。制备并分离了对白喉毒素的催化(C)、跨膜(T)和受体结合(R)结构域具有特异性的单克隆抗体。此外,还检测了针对C和T结构域中肽段产生的抗肽抗体与毒素的结合情况。相对于天然毒素,发现抗C单克隆抗体和抗肽抗体优先结合低pH处理的毒素。抗T和抗R单克隆抗体的结合情况介于对天然毒素的偏好和对低pH处理毒素的偏好之间。这些结果表明,在低pH值下,C结构域更易暴露于溶液中,并且B链的T和R结构域在低pH值下都会发生重大构象变化。基于这些结果,提出了一个模型,即低pH值会诱导结构域内和结构域间相互作用发生几种协同变化。R结构域参与这些变化具有特别重要的意义,因为这表明R结构域在低pH值诱导的变化中所起的作用比之前认识到的更为重要。