Steward Robert E, Armen Roger S, Daggett Valerie
Department of Bioengineering, University of Washington, Seattle, WA 98195-5061, USA.
Protein Eng Des Sel. 2008 Mar;21(3):187-95. doi: 10.1093/protein/gzm086. Epub 2008 Feb 13.
Transthyretin (TTR)-containing amyloid fibrils are deposited in cardiac tissue as a natural consequence of aging. A large number of inherited mutations lead to amyloid diseases by accelerating TTR deposition in other organs. Amyloid formation is preceded by a disruption of the quaternary structure of TTR and conformational changes in the monomer. To study conformational changes preceding the formation of amyloid, we performed molecular dynamics simulations of the wild-type monomer, amyloidogenic variants (V30M, L55P, V122I) and a protective variant (T119M) at neutral and low pH. At low pH, the D strand dissociated from the beta-sheet to expose the A strand, consistent with experimental studies. In amyloidogenic variants and in the wild-type at low pH, there was a conformational change in the beta-sheets into alpha-sheet via peptide bond flips that was not observed at neutral pH in the wild-type monomer. The same residues participated in conversion in each amyloidogenic variant simulation, originating in the G strand between residues 106 and 109, with accelerated conversion at low pH. The T119M protective variant changed the local conformation of the H strand and suppressed the conversion observed in amyloidogenic variants.
含甲状腺素运载蛋白(TTR)的淀粉样纤维作为衰老的自然结果沉积在心脏组织中。大量遗传突变通过加速TTR在其他器官中的沉积导致淀粉样疾病。淀粉样蛋白形成之前,TTR的四级结构会遭到破坏,单体也会发生构象变化。为了研究淀粉样蛋白形成之前的构象变化,我们对野生型单体、淀粉样变变体(V30M、L55P、V122I)和一个保护性变体(T119M)在中性和低pH条件下进行了分子动力学模拟。在低pH条件下,D链从β折叠中解离,暴露出A链,这与实验研究结果一致。在淀粉样变变体以及低pH条件下的野生型中,β折叠通过肽键翻转转变为α螺旋,而在野生型单体的中性pH条件下未观察到这种情况。在每个淀粉样变变体模拟中,相同的残基参与了转变,起始于106至109位残基之间的G链,在低pH条件下转变加速。T119M保护性变体改变了H链的局部构象,并抑制了在淀粉样变变体中观察到的转变。