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首页> 外文期刊>Nucleic Acids Research >Molecular basis for t(6)A modification in human mitochondria
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Molecular basis for t(6)A modification in human mitochondria

机译:用于T(6)人体线粒体的修饰的分子基础

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摘要

N-6-Threonylcarbamoyladenosine (t(6)A) is a universal tRNA modification essential for translational accuracy and fidelity. In human mitochondria, YrdC synthesises an L-threonylcarbamoyl adenylate (TC-AMP) intermediate, and OSGEPL1 transfers the TC-moiety to five tRNAs, including human mitochondrial tRNA(Thr) (hmtRNA(Thr)). Mutation of hmtRNAs, YrdC and OSGEPL1, affecting efficient t(6)A modification, has been implicated in various human diseases. However, little is known about the tRNA recognition mechanism in t(6)A formation in human mitochondria. Herein, we showed that OSGEPL1 is a monomer and is unique in utilising C34 as an anti-determinant by studying the contributions of individual bases in the anticodon loop of hmtRNA(Thr) to t(6)A modification. OSGEPL1 activity was greatly enhanced by introducing G38A in hmtRNA(lle) or the A28:U42 base pair in a chimeric tRNA containing the anticodon stem of hmtRNA(ser)(AGY), suggesting that sequences of specific hmtRNAs are fine-tuned for different modification levels. Moreover, using purified OSGEPL1, we identified multiple acetylation sites, and OSGEPL1 activity was readily affected by acetylation via multiple mechanisms in vitro and in vivo. Collectively, we systematically elucidated the nucleotide requirement in the anticodon loop of hmtRNAs, and revealed mechanisms involving tRNA sequence optimisation and post-translational protein modification that determine t(6)A modification levels.
机译:N-6 - 苏氨基氨基酰甲酰胺(T(6)A)是对平移精度和保真度必不可少的通用TRNA改性。在人体线粒体中,YRDC合成L-苏氨基羰基亚苯基酯(TC-AMP)中间体,并且OSGEPL1将TC部分转移至五个TRNA,包括人体线粒体TRNA(THR)(HMTRNA(THRNA(THRNA))。 HMTRNA,YRDC和OSGEPL1的突变,影响有效的T(6)改性,已经涉及各种人类疾病。然而,关于人体线粒体中的T(6)形成的TRNA识别机制很少。在此,我们展示OSGEPL1是单体,并且通过研究HMTRNA(THR)至T(6)的抗助听链中的个体碱基的贡献来利用C34作为抗决定性。通过在HMTRNA(LLE)中的G38a或A28:U42碱基对中含有HMTRNA(SER)(ACY)的抗助听茎的嵌合性TRNA中的G38a,据含有OSGEPL1活性大大提高了OSGEPL1活性,表明特定HMTRNA的序列是微调的用于不同的修改水平。此外,使用纯化的OSGEPL1,我们鉴定了多个乙酰化位点,并且通过在体外和体内通过多种机制乙酰化逐渐影响OSGEPL1活性。总的来说,我们系统地阐明了HMTRNA的抗oryon回路中的核苷酸要求,并揭示了涉及TRNA序列优化和转换后蛋白质修饰的机制,所述蛋白质改性确定T(6)改性水平。

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  • 来源
    《Nucleic Acids Research》 |2020年第6期|共14页
  • 作者单位

    Univ Chinese Acad Sci Chinese Acad Sci Shanghai Inst Biochem &

    Cell Biol State Key Lab Mol Biol Ctr Excellence Mol Cell Sc 320 Yue Yang Rd Shanghai 200031 Peoples R China;

    Univ Chinese Acad Sci Chinese Acad Sci Shanghai Inst Biochem &

    Cell Biol State Key Lab Mol Biol Ctr Excellence Mol Cell Sc 320 Yue Yang Rd Shanghai 200031 Peoples R China;

    Univ Chinese Acad Sci Chinese Acad Sci Shanghai Inst Biochem &

    Cell Biol State Key Lab Mol Biol Ctr Excellence Mol Cell Sc 320 Yue Yang Rd Shanghai 200031 Peoples R China;

    Purdue Univ Biol Dept Coll Sci 150 N Univ St W Lafayette IN 47907 USA;

    Univ Chinese Acad Sci Chinese Acad Sci Shanghai Inst Biochem &

    Cell Biol State Key Lab Mol Biol Ctr Excellence Mol Cell Sc 320 Yue Yang Rd Shanghai 200031 Peoples R China;

    Univ Chinese Acad Sci Chinese Acad Sci Shanghai Inst Biochem &

    Cell Biol State Key Lab Mol Biol Ctr Excellence Mol Cell Sc 320 Yue Yang Rd Shanghai 200031 Peoples R China;

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  • 正文语种 eng
  • 中图分类 生物化学;
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