Pallarés Irantzu, Berenguer Clara, Avilés Francesc X, Vendrell Josep, Ventura Salvador
Departament de Bioquímica i Biologia Molecular, Facultat de Ciències, Institut de Biotecnologia i de Biomedicina, Universitat Autònoma de Barcelona, E-08193 Bellaterra, Spain.
BMC Struct Biol. 2007 Nov 8;7:75. doi: 10.1186/1472-6807-7-75.
In conformational disorders, it is not evident which amyloid aggregates affect specific molecular mechanisms or cellular pathways, which cause disease because of their quantity and mechanical features and which states in aggregate formation are pathogenic. Due to the increasing consensus that prefibrillar oligomers play a major role in conformational diseases, there is a growing interest in understanding the characteristics of metastable polypeptide associations.
Here, we show that human latexin, a protein that shares the same fold with cystatin C, assembles into stable spherical amyloid-like oligomers that bind thioflavin-T and congo red similarly to common amyloid structures but do not evolve into fibrils. Latexin self-assembly correlates with the formation of a mostly denaturated state rather than with the population of partially structured intermediates during the unfolding process. The results suggest that unfolding of alpha-helix 3 might be involved in the transition of latexin toward amyloidotic species, supporting the notion of the protective role of the native protein structure against polymerization.
Overall the data herein indicate that latexin could be a good model for the study of the structural and sequential determinants of oligomeric assemblies in protein aggregation processes.
在构象紊乱中,并不清楚哪些淀粉样聚集体会影响特定的分子机制或细胞途径,哪些因其数量和机械特性而导致疾病,以及聚集体形成过程中的哪些状态具有致病性。由于越来越多的人认为前纤维寡聚体在构象疾病中起主要作用,因此人们对了解亚稳态多肽缔合的特征越来越感兴趣。
在这里,我们表明,与胱抑素C具有相同折叠结构的人类乳胶蛋白组装成稳定的球形淀粉样寡聚体,其与硫黄素-T和刚果红的结合方式与常见淀粉样结构相似,但不会演变成纤维。乳胶蛋白的自组装与形成大部分变性状态相关,而不是与解折叠过程中部分结构化中间体的群体相关。结果表明,α-螺旋3的解折叠可能参与了乳胶蛋白向淀粉样物种的转变,支持了天然蛋白质结构对聚合作用的保护作用这一观点。
总体而言,本文的数据表明,乳胶蛋白可能是研究蛋白质聚集过程中寡聚体组装的结构和序列决定因素的良好模型。