Tissue Engineering and Stem Cell Group, Singapore Eye Research Institute, Singapore.
Duke-NUS Graduate Medical School, Singapore.
Sci Rep. 2016 Mar 31;6:23836. doi: 10.1038/srep23836.
Most stromal corneal dystrophies are associated with aggregation and deposition of the mutated transforming growth factor-β induced protein (TGFβIp). The 4(th)_FAS1 domain of TGFβIp harbors ~80% of the mutations that forms amyloidogenic and non-amyloidogenic aggregates. To understand the mechanism of aggregation and the differences between the amyloidogenic and non-amyloidogenic phenotypes, we expressed the 4(th)_FAS1 domains of TGFβIp carrying the mutations R555W (non-amyloidogenic) and H572R (amyloidogenic) along with the wild-type (WT). R555W was more susceptible to acidic pH compared to H572R and displayed varying chemical stabilities with decreasing pH. Thermal denaturation studies at acidic pH showed that while WT did not undergo any conformational transition, the mutants exhibited a clear pH-dependent irreversible conversion from αβ conformation to β-sheet oligomers. The β-oligomers of both mutants were stable at physiological temperature and pH. Electron microscopy and dynamic light scattering studies showed that β-oligomers of H572R were larger compared to R555W. The β-oligomers of both mutants were cytotoxic to primary human corneal stromal fibroblast (pHCSF) cells. The β-oligomers of both mutants exhibit variations in their morphologies, sizes, thermal and chemical stabilities, aggregation patterns and cytotoxicities.
大多数基质角膜营养不良与转化生长因子-β诱导蛋白(TGFβIp)的突变聚集和沉积有关。TGFβIp 的第 4(四)FAS1 结构域含有形成淀粉样和非淀粉样聚集的约 80%的突变。为了了解聚集的机制以及淀粉样和非淀粉样表型之间的差异,我们表达了携带突变 R555W(非淀粉样)和 H572R(淀粉样)的 TGFβIp 的第 4(四)FAS1 结构域以及野生型(WT)。与 H572R 相比,R555W 在酸性 pH 下更容易发生聚集,并且随着 pH 值降低而表现出不同的化学稳定性。在酸性 pH 下的热变性研究表明,虽然 WT 没有经历任何构象转变,但突变体表现出明显的 pH 依赖性不可逆从 αβ 构象到 β-片层寡聚物的转换。两种突变体的 β-寡聚物在生理温度和 pH 值下都是稳定的。电子显微镜和动态光散射研究表明,与 R555W 相比,H572R 的 β-寡聚物更大。两种突变体的 β-寡聚物对原代人角膜基质成纤维细胞(pHCSF)细胞都具有细胞毒性。两种突变体的 β-寡聚物在形态、大小、热稳定性、化学稳定性、聚集模式和细胞毒性方面存在差异。