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On universal coding events in protein biogenesis

机译:蛋白质生物发生中的通用编码事件

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AbstractThe complete ribosomal protein synthesis cycle and codon-amino acids associations are universally preserved in all life taxa on Earth. This process is accompanied by a set of hierarchically organized recognition and controlling events at different complexity levels. It starts with amino acid activation by aminoacyl tRNA synthetases (aaRS) followed by matching with the acceptor units of their cognate tRNAs (“operational RNA code”) and ribosomal codon-anticodon pairing of messenger RNA (“triplet code”). However, this codon-anticodon matching is possible only when protein translation machinery (translation factors, ribosome) accepts an esterified amino acid. This capacity (“charge code”) correlates mainly with the amino acid nature and the identity elements in the tRNA 3D structure. A fourth potential “folding code” (also referred as “stereochemical code”) between the translation dynamics, sequence composition and folding of the resulting protein can also be defined in the frame of the ‘Anfinsen dogma’ followed by post-translational modifications. All these coding events as well as the basic chemistry of life are deemed invariant across biological taxa due to the horizontal gene transfer (HGT) making the ‘universal genetic code’ the ‘lingua franca’ of life of earth. When cells (or organelles) are prevented from transmitting genetic information (i.e., HGT) the deviations in the above-mentioned coding events become inevitable. A better understanding of these codes, in particular the mechanisms of their conservation in the context of HGT could provide a guide for the experimental engineering1
机译:<![cdata [ 抽象 完全核糖体蛋白质合成循环和密码子 - 氨基酸关联在地球上的所有生命分类群中都是普遍存在的。此过程伴随着一组分层组织的识别和控制事件,不同的复杂程度。它从氨基酸TRNA合成酶(AARs)以氨基酸活化开始,然后与其同源TRNA的受体单元(“操作RNA码”)和核糖体密码子 - 抗托管对信使RNA的配对(“三联码”)匹配。然而,只有当蛋白翻译机械(翻译因子,核糖体)接受酯化的氨基酸时,这种密码子 - 抗ocon匹配也是可能的。该容量(“电荷码”)主要与TRNA 3D结构中的氨基酸性质和身份元素相关联。在翻译动态,序列组合物和所得蛋白质的折叠之间,在“Anfinsen Dogma”之后的框架中,第四潜在的“折叠码”(也称为“立体化学代码”)在“Anfinsen Dogma”的框架中,然后是翻译后修改。由于水平基因转移(HGT),所有这些编码事件以及生命的基本化学在生物分类群中被视为导致的生物分类群体,这是由于水平的基因转移(HGT)制造了“普遍遗传法”的“地球通用”的“通用遗传法郎”。当阻止细胞(或细胞器)传输遗传信息(即HGT)时,上述编码事件中的偏差变得不可避免。更好地了解这些代码,特别是在HGT的背景下的保守机制可以为实验工程提供指南 1

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