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Supersized Ribosomal RNA Expansion Segments in Asgard Archaea

机译:在Asgard Archaea中取代核糖体RNA膨胀区段

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摘要

The ribosome’s common core, comprised of ribosomal RNA (rRNA) and universal ribosomal proteins, connects all life back to a common ancestor and serves as a window to relationships among organisms. The rRNA of the common core is similar to rRNA of extant bacteria. In eukaryotes, the rRNA of the common core is decorated by expansion segments (ESs) that vastly increase its size. Supersized ESs have not been observed previously in Archaea, and the origin of eukaryotic ESs remains enigmatic. We discovered that the large ribosomal subunit (LSU) rRNA of two Asgard phyla, Lokiarchaeota and Heimdallarchaeota, considered to be the closest modern archaeal cell lineages to Eukarya, bridge the gap in size between prokaryotic and eukaryotic LSU rRNAs. The elongated LSU rRNAs in Lokiarchaeota and Heimdallarchaeota stem from two supersized ESs, called ES9 and ES39. We applied chemical footprinting experiments to study the structure of Lokiarchaeota ES39. Furthermore, we used covariation and sequence analysis to study the evolution of Asgard ES39s and ES9s. By defining the common eukaryotic ES39 signature fold, we found that Asgard ES39s have more and longer helices than eukaryotic ES39s. Although Asgard ES39s have sequences and structures distinct from eukaryotic ES39s, we found overall conservation of a three-way junction across the Asgard species that matches eukaryotic ES39 topology, a result consistent with the accretion model of ribosomal evolution.
机译:核糖体的常见核心,由核糖体RNA(RRNA)和通用核糖体蛋白组成,将所有生命连接到共同的祖先,并用作生物体之间的关系的窗口。共同核心的RRNA类似于现存细菌的rRNA。在真核生物中,共同核心的rRNA由扩展段(ESS)装饰,从而大大增加其尺寸。在古代亚地亚之前未观察到过滤的ESS,真核科的起源仍然是神秘的。我们发现,两种ASGARD的大型核糖体亚基(LSU)RRNA,LOKIARCHAEOTA和HEIMDALLARCHAOTA被认为是最近的现代古核细胞谱系到Eukarya,弥合了原核和真核LSU RRNA之间的差距。 Lokiarchaeota的细长LSU RRNA和Heimdallarchaeota源于两种超级化的ESS,称为ES9和ES39。我们应用化学脚印实验,研究了Lokiarchaeota ES39的结构。此外,我们使用协变性和序列分析来研究ASGARD ES39S和ES9S的演变。通过定义常见的真核生物ES39签名折叠,我们发现ASGARD ES39S比真核ES39更长的螺旋。尽管ASGARD ES39具有与真核ES39不同的序列和结构,但我们发现整体保护在与真核生物ES39拓扑相匹配的ASGARD物种上的三通交叉点,结果与核糖体进化的增速模型一致。

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