Gault Joseph, Lianoudaki Danai, Kaldmäe Margit, Kronqvist Nina, Rising Anna, Johansson Jan, Lohkamp Bernhard, Laín Sonia, Allison Timothy M, Lane David P, Marklund Erik G, Landreh Michael
Department of Chemistry , University of Oxford , South Parks Road , Oxford OX1 3QZ , United Kingdom.
Science for Life Laboratory, Department of Microbiology, Tumor and Cell Biology , Karolinska Institutet , Tomtebodavägen 23A , 171 65 Stockholm , Sweden.
J Phys Chem Lett. 2018 Jul 19;9(14):4082-4086. doi: 10.1021/acs.jpclett.8b01817. Epub 2018 Jul 9.
Despite their fundamental biological importance and therapeutic potential, the interactions between chemical chaperones and proteins remain difficult to capture due to their transient and nonspecific nature. Using a simple mass spectrometric assay, we are able to follow the interactions between proteins and the chemical chaperone trimethylamine- N-oxide (TMAO). In this manner, we directly observe that the counteraction of TMAO and the denaturant urea is driven by the exclusion of TMAO from the protein surface, whereas the surfactant lauryl dimethylamine- N-oxide cannot be displaced. Our results clearly demonstrate a direct chaperoning mechanism for TMAO, corroborating extensive computational studies, and pave the way for the use of nondenaturing mass spectrometry and related techniques to study chemical chaperones in molecular detail.
尽管化学伴侣与蛋白质之间的相互作用具有重要的生物学意义和治疗潜力,但由于其短暂性和非特异性,仍然难以捕捉。通过一种简单的质谱分析方法,我们能够追踪蛋白质与化学伴侣三甲胺 - N - 氧化物(TMAO)之间的相互作用。通过这种方式,我们直接观察到TMAO与变性剂尿素之间的对抗作用是由TMAO从蛋白质表面被排斥所驱动的,而表面活性剂月桂基二甲基胺 - N - 氧化物则无法被取代。我们的结果清楚地证明了TMAO的直接伴侣机制,证实了广泛的计算研究,并为使用非变性质谱和相关技术在分子细节上研究化学伴侣铺平了道路。