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S-adenosylmethionine tRNA modification: unexpected/unsuspected implications of former/new players

机译:S-腺苷甲硫氨酸TRNA修饰:前/新球员的意外/未经用的影响

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S-adenosylmethionine supplies methyl groups to many acceptors, including lipids, proteins, RNA, DNA, and a wide range of small molecules. It acts as the precursor in the biosynthesis of metal ion chelating compounds, such as nicotianamine and phytosiderophores, of the polyamines spermidine and spermine and of some plant hormones. Finally, it is the source of catalytic 5'-deoxyadenosyl radicals. Radical S-adenosylmethionine (SAM) enzymes (RS) represent one of the most abundant groups (more than 100,000) of enzymes, exerting a plethora of biological functions, some of which are still unknown. In this work, we will focus on two RS: CDK5RAP1 and CDKAL1, both of which are involved in tRNA modifications that result in important tRNA folding and stability and in maintaining high translational fidelity. Based on this crucial role, their impairment can be important in the development of different human diseases.? The author(s).
机译:S-腺苷甲硫氨酸为许多受体提供甲基,包括脂质,蛋白质,RNA,DNA和各种小分子。它用作金属离子螯合化合物的生物合成中的前体,例如烟胺胺和植物细胞,包括多胺亚胺和精霉素和一些植物激素。最后,它是催化剂5'-脱氧糖基的来源。基团S-腺苷甲基硫氨酸(SAM)酶(RS)代表最丰富的群体(超过100,000)酶之一,施加过多的生物功能,其中一些仍然是未知的。在这项工作中,我们将专注于两个RS:CDK5RAP1和CDKAL1,两者都涉及TRNA修饰,导致重要的TRNA折叠和稳定性以及保持高的平移保真度。根据这种至关重要的作用,他们的损伤在不同人类疾病的发展中可能是重要的。作者。

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