Laboratory of Structural Biology, National Institute of Arthritis, Musculoskeletal and Skin Diseases, National Institutes of Health, Bethesda, MD 20892, USA.
Proc Natl Acad Sci U S A. 2011 Feb 22;108(8):3252-7. doi: 10.1073/pnas.1011342108. Epub 2011 Feb 7.
HET-s is a prion protein of the fungus Podospora anserina which, in the prion state, is active in a self/nonself recognition process called heterokaryon incompatibility. Its prionogenic properties reside in the C-terminal "prion domain." The HET-s prion domain polymerizes in vitro into amyloid fibrils whose properties depend on the pH of assembly; above pH 3, infectious singlet fibrils are produced, and below pH 3, noninfectious triplet fibrils. To investigate the correlation between structure and infectivity, we performed cryo-EM analyses. Singlet fibrils have a helical pitch of approximately 410 Å and a left-handed twist. Triplet fibrils have three protofibrils whose lateral dimensions (36 × 25 Å) and axial packing (one subunit per 9.4 Å) match those of singlets but differ in their supercoiling. At 8.5-Å resolution, the cross-section of the singlet fibril reconstruction is largely consistent with that of a β-solenoid model previously determined by solid-state NMR. Reconstructions of the triplet fibrils show three protofibrils coiling around a common axis and packed less tightly at pH 3 than at pH 2, eventually peeling off. Taken together with the earlier observation that fragmentation of triplet fibrils by sonication does not increase infectivity, these observations suggest a novel mechanism for self-propagation, whereby daughter fibrils nucleate on the lateral surface of singlet fibrils. In triplets, this surface is occluded, blocking nucleation and thereby explaining their lack of infectivity.
Het-s 是一种真菌 Podospora anserina 的朊病毒蛋白,在朊病毒状态下,它在一种自我/非自我识别过程中起作用,称为异核体不兼容。其朊病毒特性位于 C 端“朊病毒结构域”。Het-s 朊病毒结构域在体外聚合为淀粉样纤维,其性质取决于组装的 pH 值;在 pH 值 3 以上,会产生传染性单纤维,而在 pH 值 3 以下,会产生非传染性三聚体纤维。为了研究结构与传染性之间的相关性,我们进行了低温电子显微镜分析。单纤维具有约 410Å 的螺旋螺距和左手扭曲。三聚体纤维有三个原纤维,其横向尺寸(36×25Å)和轴向包装(每个亚基 9.4Å)与单纤维匹配,但超螺旋结构不同。在 8.5Å 的分辨率下,单纤维重构的横截面与之前通过固态 NMR 确定的β-螺线管模型大致一致。三聚体纤维的重构显示三个原纤维围绕共同轴卷曲,在 pH 值 3 时比在 pH 值 2 时包装得更不紧密,最终剥落。与之前的观察结果(超声处理使三聚体纤维断裂不会增加传染性)相结合,这些观察结果表明了一种新的自我传播机制,即子纤维在单纤维的侧表面上成核。在三聚体中,这个表面被阻塞,阻止了成核,从而解释了它们缺乏传染性。