Astbury Centre for Structural Molecular Biology, Institute of Molecular and Cellular Biology, University of Leeds, Leeds, LS2 9JT, United Kingdom.
Proc Natl Acad Sci U S A. 2010 Apr 13;107(15):6794-8. doi: 10.1073/pnas.0913046107. Epub 2010 Mar 29.
The key to understanding amyloid disease is the characterization of oligomeric species formed during the early stages of fibril assembly. Here we have used electrospray ionisation-ion mobility spectrometry-mass spectrometry to identify and structurally characterize the oligomers formed during amyloid assembly from beta(2)-microglobulin (beta(2)m). Beta(2)m oligomers are shown to have collision cross-sections consistent with monomeric units arranged in elongated assemblies prior to fibril formation. Direct observation, separation, and quantification of transient oligomeric species reveals that monomers to tetramers are populated through the lag phase with no evidence for the significant population of larger oligomeric species under the conditions employed. The dynamics of each oligomeric species were monitored directly within the ensemble at concentrations commensurate with amyloid formation by observing the subunit exchange of (14)N- and (15)N-labeled oligomers. Analysis of the data revealed a decrease in oligomer dynamics concomitant with increasing oligomer size and the copopulation of dynamic dimeric and trimeric species with more stable trimeric and tetrameric species. The results presented map the events occurring during the lag phase of fibril formation and give a clear insight into the structural characteristics and dynamic nature of the beta(2)m oligomers, demonstrating the existence of elongated assemblies arising from an intact amyloidogenic protein during fibril formation.
理解淀粉样疾病的关键在于对纤维组装早期形成的低聚物物种进行特征描述。在此,我们利用电喷雾电离-离子淌度谱-质谱联用技术,对β2-微球蛋白(β2m)纤维组装过程中形成的低聚物进行了鉴定和结构分析。结果表明,β2m 低聚物的碰撞截面与纤维形成前单体单元排列成的伸长组装体一致。对瞬态低聚物物种的直接观察、分离和定量表明,在无明显更大低聚物物种的情况下,单体到四聚体通过滞后期填充。通过观察(14)N-和(15)N 标记的寡聚物亚基交换,在与淀粉样形成相称的浓度下,在整个混合物中直接监测每种低聚物物种的动力学,以监测各低聚物物种的动力学。数据分析表明,随着低聚物尺寸的增加,低聚物动力学降低,同时存在动态二聚体和三聚体与更稳定的三聚体和四聚体共种群。所呈现的结果描绘了纤维形成滞后期发生的事件,并深入了解了β2m 低聚物的结构特征和动态特性,证明了在纤维形成过程中完整的淀粉样蛋白会产生伸长的组装体。