Hodkinson John P, Jahn Thomas R, Radford Sheena E, Ashcroft Alison E
Astbury Centre for Structural Molecular Biology, Institute of Molecular and Cellular Biology, University of Leeds, Leeds, United Kingdom.
J Am Soc Mass Spectrom. 2009 Feb;20(2):278-86. doi: 10.1016/j.jasms.2008.10.005. Epub 2008 Oct 17.
The light chain of the major histocompatibility complex class 1 (MHC-1), the protein beta(2)-microglobulin (beta(2)m), has amyloidogenic properties that arise only upon its dissociation from the MHC-1. Here hydrogen/deuterium exchange electrospray ionization mass spectrometry (HDX-ESI-MS) has been used to compare the solution dynamics of beta(2)m in its MHC-1 bound state compared with those of beta(2)m as a free monomer. The capability of tandem mass spectrometry to dissociate the MHC-1 into its individual constituents in the gas phase following deuterium incorporation in solution has permitted the direct observation of the exchange properties of MHC-1 bound beta(2)m for the first time. The HDX-ESI-MS data show clearly that the H-->D exchange of MHC-1 bound beta(2)m follows EX2 kinetics and that about 20 protons remain protected from exchange after 17 days. Free from the MHC-1, monomeric beta(2)m exhibits significantly different HDX behavior, which encompasses both EX1 and EX2 kinetics. The EX2 kinetics indicate a tenfold increase in the rate of exchange compared with MHC-1 bound beta(2)m, with just 10 protons remaining protected from EX2 exchange and therefore exchanging only via the EX1 mechanism. The EX1 kinetics observed for unbound beta(2)m are consistent with unfolding of its exchange-protected core with a t(1/2) of 68 min (pH 7, 37 degrees C). Thus, upon dissociation from the stabilizing influence of the MHC-1, free beta(2)m becomes highly dynamic and undergoes unfolding transitions that result in an aggregation-competent protein.
主要组织相容性复合体I类(MHC - 1)的轻链,即蛋白质β2 - 微球蛋白(β2m),具有仅在其与MHC - 1解离时才会出现的淀粉样变性特性。在此,氢/氘交换电喷雾电离质谱(HDX - ESI - MS)已被用于比较β2m在其与MHC - 1结合状态下的溶液动力学与作为游离单体的β2m的溶液动力学。串联质谱在溶液中掺入氘后能够在气相中将MHC - 1解离成其各个组分,这使得首次能够直接观察与MHC - 1结合的β2m的交换特性。HDX - ESI - MS数据清楚地表明,与MHC - 1结合的β2m的H→D交换遵循EX2动力学,并且在17天后约有20个质子仍受保护不发生交换。脱离MHC - 1后,单体β2m表现出明显不同的HDX行为,其中包括EX1和EX2动力学。EX2动力学表明与与MHC - 1结合的β2m相比,交换速率增加了10倍,只有10个质子受保护不发生EX2交换,因此仅通过EX1机制进行交换。未结合的β2m观察到的EX1动力学与其交换保护核心的展开一致,其半衰期为68分钟(pH 7,37℃)。因此,从MHC - 1的稳定影响中解离后,游离的β2m变得高度动态,并经历展开转变,从而产生具有聚集能力的蛋白质。