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Amyloid fibrils embodying distinctive yeast prion phenotypes exhibit diverse morphologies

机译:体现着独特的酵母朊病毒表型表现出不同的形态素的淀粉样蛋白原纤维

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摘要

Yeast prions are self-templating protein-based mechanisms of inheritance whose conformational changes lead to the acquisition of diverse new phenotypes. The best studied of these is the prion domain (NM) of Sup35, which forms an amyloid that can adopt several distinct conformations (strains) that confer distinct phenotypes when introduced into cells that do not carry the prion. Here, we investigate the structure of NM fibrils templated into the prion conformation with cellular lysates. Our electron microscopy studies reveal that NM fibrils that confer either a strong or a weak prion phenotype are both mixtures of thin and thick fibrils that result from differences in packing of the M domain. Strong NM fibrils have more thin fibrils and weak NM fibrils have more thick fibrils. Interestingly, both mass per length and solid state NMR reveal that the thin and thick fibrils have different underlying molecular structures in the prion strain variants that do not interconvert.
机译:酵母朊病毒是自我模板蛋白的继承机制,其构象变化导致采集不同的新表型。 这些最佳研究是Sup35的朊病毒结构域(NM),其形成淀粉样蛋白,其可以采用几个不同的构象(菌株),当引入不携带朊病毒的细胞时赋予了不同的表型。 在这里,我们研究与细胞裂解物的朊病毒构象的纳米原纤维的结构。 我们的电子显微镜研究表明,赋予强或弱朊病毒表型的NM原纤维是薄且厚的原纤维的混合物,其是由M个域的填充含量产生的薄和厚的原纤维。 强的nm纤维有更薄的原纤维,弱nm纤维有更厚的原纤维。 有趣的是,每个长度和固态NMR的质量都揭示了薄且厚的原纤维在不互连的朊病毒菌株变体中具有不同的分子结构。

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