...
首页> 外文期刊>Transcription >TRNA evolution from the proto-tRNA minihelix world
【24h】

TRNA evolution from the proto-tRNA minihelix world

机译:来自原始tRNA微型螺旋世界的TRNA进化

获取原文
获取原文并翻译 | 示例

摘要

Multiple models have been advanced for the evolution of cloverleaf tRNA. Here, the conserved archaeal tRNA core (75-nt) is posited to have evolved from ligation of three proto-tRNA minihelices (31 -nt) and two-symmetrical 9-nt deletions within joinedacceptor stems (93 - 18 = 75-nt). The primary evidence for this conclusion is that the 5-nt stem 7-nt anticodon loop and the 5-nt stem 7-nt T loop are structurally homologous and related by coding sequence. We posit that the D loop was generated from a third minihelix (31-nt) in which the stem and loop became rearranged after 9-nt acceptor stem deletions and cloverleaf folding. The most 3'-5-nt segment of the D loop and the 5-nt V loop are apparent remnants of the joined acceptor stems (14 - 9 = 5-nt).Before refolding in the tRNA cloverleaf, we posit that the 3'-5-nt segment of the D loop and the 5-nt V loop were paired, and, in the tRNA cloverleaf, frequent pairing of positions 29 (D loop) and 47 (V loop) remains (numbered on a 75-nt tRNA cloverleafcore). Amazingly, after >3.5 billion years of evolutionary pressure on the tRNA cloverleaf structure, a model can be constructed that convincingly describes the genesis of 75/75-nt conserved archaeal tRNA core positions. Judging from the tRNA structure,cloverleaf tRNA appears to represent at least a second-generation scheme (and possibly a third-generation scheme) that replaced a robust 31-nt minihelix protein-coding system, evidence for which is preserved in the cloverleaf structure. Understanding tRNA evolution provides insights into ribosome and rRNA evolution.
机译:苜蓿叶tRNA进化的多种模型已经提出。在这里,保守的古细菌tRNA核心(75-nt)被认为是从三个原始tRNA小螺旋(31-nt)的连接和连接的受体茎内的两个对称的9-nt缺失(93-18 = 75-nt)进化而来的。该结论的主要证据是5-nt茎7-nt反密码子环和5-nt茎7-nt T环在结构上是同源的,并且通过编码序列相关。我们假定D环是从第三个minihelix(31-nt)生成的,其中第三个9-nt受体茎缺失和苜蓿叶折叠后,茎和环重新排列。 D环和5 nt V环的最3'-5-nt区段是连接的受体茎的明显残基(14-9 = 5-nt)。在tRNA三叶草中重折叠之前,我们假设3将D环的'-5-nt片段和5-nt的V环配对,并且在tRNA苜蓿叶中,位置29(D环)和47(V环)的位置频繁配对(编号为75 nt tRNA cloverleafcore)。令人惊讶的是,在对tRNA苜蓿叶结构进行超过35亿年的进化压力后,可以构建一个令人信服地描述75 / 75-nt保守古细菌tRNA核心位置的起源的模型。从tRNA结构来看,苜蓿叶型tRNA似乎至少代表了替代健壮的31nt小螺旋蛋白质编码系统的第二代方案(可能还有第三代方案),其证据被保留在苜蓿叶型结构中。了解tRNA进化提供了对核糖体和rRNA进化的见识。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号