Evidence for S331-G-S-L within the amyloid core of myocilin olfactomedin domain fibrils based on low-resolution 3D solid-state NMR spectra

Emily G. Saccuzzo, Alicia S. Robang, Yuan Gao, Bo J Chen, Raquel L Lieberman, Anant Krishna Paravastu
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Abstract

Myocilin-associated glaucoma is a protein-conformational disorder associated with formation of a toxic amyloid-like aggregate. Numerous destabilizing single point variants, distributed across the myocilin olfactomedin β-propeller (OLF, myocilin residues 245-504, 30 kDa) are associated with accelerated disease progression. In vitro, wild type (WT) OLF can be promoted to form thioflavin T (ThT)-positive fibrils under mildly destabilizing (37°C, pH 7.2) conditions. Consistent with the notion that only a small number of residues within a protein are responsible for amyloid formation, 3D 13C-13C solid-state NMR spectra show that OLF fibrils are likely to be composed of only about one third of the overall sequence. Here, we probe the residue composition of fibrils formed de novo from purified full-length OLF. We were able to make sequential assignments consistent with the sequence S331-G-S-L334. This sequence appears once within a previously identified amyloid-prone region (P1, G326AVVYSGSLYFQ) internal to OLF. Since nearly half of the pairs of adjacent residues (di-peptides) in OLF occur only once in the primary structure and almost all the 3-residue sequences (tri-peptides) are unique, remarkably few sequential assignments are necessary to uniquely identify specific regions of the amyloid core. This assignment approach could be applied to other systems to expand our molecular comprehension of how folded proteins undergo fibrillization.
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基于低分辨率三维固态 NMR 光谱的肌球蛋白橄榄酰肌球蛋白结构域纤维淀粉样核心内 S331-G-S-L 的证据
肌球蛋白相关性青光眼是一种与毒性淀粉样聚集体的形成有关的蛋白质构象紊乱。分布在肌球蛋白嗅动素β-推进器(OLF,肌球蛋白残基245-504,30 kDa)上的大量不稳定单点变体与疾病的加速进展有关。在体外,野生型(WT)OLF 可在轻度不稳定(37°C,pH 7.2)条件下促进形成硫黄素 T(ThT)阳性纤维。三维 13C-13C 固态 NMR 光谱显示,OLF 纤维可能只由整个序列的三分之一组成,这与蛋白质中只有少数残基负责淀粉样蛋白形成的观点一致。在这里,我们探究了由纯化的全长 OLF 从新形成的纤维的残基组成。我们能够根据序列 S331-G-S-L334 进行序列分配。该序列在之前确定的 OLF 内部淀粉样蛋白易发区(P1,G326AVVYSGSLYFQ)中出现过一次。由于 OLF 中近一半的相邻残基对(二肽)在一级结构中只出现一次,而且几乎所有的三残基序列(三肽)都是唯一的,因此只需进行极少量的序列分配就能唯一确定淀粉样核心的特定区域。这种赋值方法可应用于其他系统,以拓展我们对折叠蛋白质如何发生纤维化的分子理解。
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