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Cooperativity between different tRNA modifications and their modification pathways

机译:不同TRNA修饰之间的合作性及其改性途径

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摘要

Ribonucleotide modifications perform a wide variety of roles in synthesis, turnover and functionality of tRNA molecules. The presence of particular chemical moieties can refine the internal interaction network within a tRNA molecule, influence its thermodynamic stability, contribute novel chemical properties and affect its decoding behavior during mRNA translation. As the lack of specific modifications in the anticodon stem and loop causes disrupted proteome homeostasis, diminished response to stress conditions, and the onset of human diseases, the underlying modification cascades have recently gained particular scientific and clinical interest. Nowadays, a complicated but conclusive image of the interconnectivity between different enzymatic modification cascades and their resulting tRNA modifications emerges. Here we summarize the current knowledge in the field, focusing on the known instances of cross talk among the enzymatic tRNA modification pathways and the consequences on the dynamic regulation of the tRNA modificome by various factors. This article is part of a Special Issue entitled: SI: Regulation of tRNA synthesis and modification in physiological conditions and disease edited by Dr. Boguta Magdalena.
机译:核糖核苷酸修饰在TRNA分子的合成,周转和功能中进行各种作用。特定化学部分的存在可以在TRNA分子内细化内部相互作用网络,影响其热力学稳定性,有助于新的化学性质,并在mRNA翻译期间影响其解码行为。由于抗病茎干和环路中缺乏特异性修饰,因此蛋白质组稳态破坏,对应力条件的反应减少,并且人类疾病的发作,最近获得了特殊的科学和临床兴趣。如今,不同酶促改性级联与其所得TRNA修饰之间的相互结合性的复杂但结缔组织。在这里,我们总结了该领域的目前知识,重点是酶促TRNA修饰途径中的已知串扰的情况以及各种因素对TRNA模拟的动态调节的后果。本文是标题的特殊问题的一部分:Si:调节TRNA合成和在Boguta Magdalena博士编辑的生理病症和病症的修饰。

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