Suppr超能文献

HET-s 朊病毒形成蛋白的起源与进化:寻找其他形成淀粉样纤维的螺旋。

Origins and evolution of the HET-s prion-forming protein: searching for other amyloid-forming solenoids.

机构信息

Department of Biology, McGill University, Montreal, Quebec, Canada.

出版信息

PLoS One. 2011;6(11):e27342. doi: 10.1371/journal.pone.0027342. Epub 2011 Nov 11.

Abstract

The HET-s prion-forming domain from the filamentous fungus Podospora anserina is gaining considerable interest since it yielded the first well-defined atomic structure of a functional amyloid fibril. This structure has been identified as a left-handed beta solenoid with a triangular hydrophobic core. To delineate the origins of the HET-s prion-forming protein and to discover other amyloid-forming proteins, we searched for all homologs of the HET-s protein in a database of protein domains and fungal genomes, using a combined application of HMM, psi-blast and pGenThreader techniques, and performed a comparative evolutionary analysis of the N-terminal alpha-helical domain and the C-terminal prion-forming domain of HET-s. By assessing the tandem evolution of both domains, we observed that the prion-forming domain is restricted to Sordariomycetes, with a marginal additional sequence homolog in Arthroderma otae as a likely case of horizontal transfer. This suggests innovation and rapid evolution of the solenoid fold in the Sordariomycetes clade. In contrast, the N-terminal domain evolves at a slower rate (in Sordariomycetes) and spans many diverse clades of fungi. We performed a full three-dimensional protein threading analysis on all identified HET-s homologs against the HET-s solenoid fold, and present detailed structural annotations for identified structural homologs to the prion-forming domain. An analysis of the physicochemical characteristics in our set of structural models indicates that the HET-s solenoid shape can be readily adopted in these homologs, but that they are all less optimized for fibril formation than the P. anserina HET-s sequence itself, due chiefly to the presence of fewer asparagine ladders and salt bridges. Our combined structural and evolutionary analysis suggests that the HET-s shape has "limited scope" for amyloidosis across the wider protein universe, compared to the 'generic' left-handed beta helix. We discuss the implications of our findings on future identification of amyloid-forming proteins sharing the solenoid fold.

摘要

丝状真菌 Podospora anserina 的 HET-s 朊病毒形成结构域引起了相当大的兴趣,因为它产生了第一个明确的功能性淀粉样纤维的原子结构。该结构已被确定为具有三角形疏水性核心的左手β螺线管。为了描绘 HET-s 朊病毒形成蛋白的起源并发现其他淀粉样形成蛋白,我们使用 HMM、psi-blast 和 pGenThreader 技术的组合,在蛋白质结构域和真菌基因组数据库中搜索 HET-s 蛋白的所有同源物,并对 HET-s 的 N 端α螺旋域和 C 端朊病毒形成域进行比较进化分析。通过评估两个结构域的串联进化,我们观察到朊病毒形成域仅限于 Sordariomycetes,在 Arthroderma otae 中存在一个边缘额外的序列同源物,可能是水平转移的情况。这表明 Sordariomycetes 进化枝中的螺旋折叠具有创新性和快速进化。相比之下,N 端结构域进化速度较慢(在 Sordariomycetes 中),跨越真菌的许多不同进化枝。我们对所有鉴定的 HET-s 同源物进行了针对 HET-s 螺旋折叠的全三维蛋白质穿线分析,并为鉴定的结构同源物提供了详细的结构注释。对我们的结构模型集合中的物理化学特性的分析表明,HET-s 螺旋形状可以很容易地在这些同源物中采用,但它们都不如 P. anserina HET-s 序列本身更适合纤维形成,主要是因为存在较少的天冬酰胺梯和盐桥。我们的综合结构和进化分析表明,与“通用”左手β螺旋相比,HET-s 形状在更广泛的蛋白质宇宙中淀粉样变性的“范围有限”。我们讨论了我们的发现对未来鉴定具有螺旋折叠的淀粉样形成蛋白的影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cfc3/3214033/0c1b735956d8/pone.0027342.g001.jpg

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验