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BEAN and HABAS: Polyphyletic insertions in the DNA‐directed RNA polymerase

机译:BEAN 和 HABAS:DNA 导向的 RNA 聚合酶中的多系插入

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摘要

The β and β′ subunits of the RNA polymerase (RNAP) are large proteins with complex multi‐domain architectures that include several insertional domains. Here, we analyze the domain organizations of RNAP‐β and RNAP‐β′ using sequence, experimentally determined structures and AlphaFold structure predictions. We observe that lineage‐specific insertional domains in bacterial RNAP‐β belong to a group that we call BEAN (broadly embedded annex). We observe that lineage‐specific insertional domains in bacterial RNAP‐β′ belong to a group that we call HABAS (hammerhead/barrel‐sandwich hybrid). The BEAN domain has a characteristic three‐dimensional structure composed of two square bracket‐like elements that are antiparallel relative to each other. The HABAS domain contains a four‐stranded open β‐sheet with a GD‐box‐like motif in one of the β‐strands and the adjoining loop. The BEAN domain is inserted not only in the bacterial RNAP‐β′, but also in the archaeal version of universal ribosomal protein L10. The HABAS domain is inserted in several metabolic proteins. The phylogenetic distributions of bacterial lineage‐specific insertional domains of β and β′ subunits of RNAP follow the Tree of Life. The presence of insertional domains can help establish a relative timeline of events in the evolution of a protein because insertion is inferred to post‐date the base domain. We discuss mechanisms that might account for the discovery of homologous insertional domains in non‐equivalent locations in bacteria and archaea.
机译:RNA 聚合酶 (RNAP) 的 β 和 β' 亚基是具有复杂多结构域结构的大蛋白,包括多个插入结构域。在这里,我们使用序列、实验确定的结构和 AlphaFold 结构预测分析 RNAP-β 和 RNAP-β' 的结构域组织。我们观察到细菌 RNAP β 中的谱系特异性插入结构域属于我们称为 BEAN (广泛嵌入附件) 的组。我们观察到细菌 RNAP-β' 中的谱系特异性插入结构域属于我们称为 HABAS (锤头/桶-夹心杂交种)的组。BEAN 结构域具有特征性的三维结构,由两个相对反平行的方括号状元素组成。HABAS 结构域包含一个四链开放β片,其中一条 β 链和相邻环中具有 GD 盒状基序。BEAN 结构域不仅插入细菌 RNAP-β′ 中,还插入到通用核糖体蛋白 L10 的古细菌版本中。HABAS 结构域插入多种代谢蛋白中。RNAP 的 β 和 β' 亚基的细菌谱系特异性插入结构域的系统发育分布遵循生命之树。插入结构域的存在有助于建立蛋白质进化中事件的相对时间线,因为插入被推断为晚于碱基结构域。我们讨论了可能解释在细菌和古细菌的非等效位置发现同源插入结构域的机制。

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