首页> 外文期刊>Genes and Development: a Journal Devoted to the Molecular Analysis of Gene Expression in Eukaryotes, Prokaryotes, and Viruses >Codon usage affects the structure and function of the Drosophila circadian clock protein PERIOD
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Codon usage affects the structure and function of the Drosophila circadian clock protein PERIOD

机译:密码子的使用会影响果蝇生物钟蛋白PERIOD的结构和功能

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摘要

Codon usage bias is a universal feature of all genomes, but its in vivo biological functions in animal systems are not clear. To investigate the in vivo role of codon usage in animals, we took advantage of the sensitivity and robustness of the Drosophila circadian system. By codon-optimizing parts of Drosophila period (dper), a core clock gene that encodes a critical component of the circadian oscillator, we showed that dper codon usage is important for circadian clock function. Codon optimization of dper resulted in conformational changes of the dPER protein, altered dPER phosphorylation profile and stability, and impaired dPER function in the circadian negative feedback loop, which manifests into changes in molecular rhythmicity and abnormal circadian behavioral output. This study provides an in vivo example that demonstrates the role of codon usage in determining protein structure and function in an animal system. These results suggest a universal mechanism in eukaryotes that uses a codon usage "code" within genetic codons to regulate cotranslational protein folding.
机译:密码子使用偏倚是所有基因组的普遍特征,但其在动物系统中的体内生物学功能尚不清楚。为了研究密码子在动物中的体内作用,我们利用了果蝇昼夜节律系统的敏感性和鲁棒性。通过对果蝇时期(dper)的一部分进行密码子优化,果蝇时期(dper)是编码生物钟振荡器关键组成部分的核心时钟基因,我们证明了dper密码子的使用对于生物钟功能很重要。 dper的密码子优化导致dPER蛋白的构象变化,dPER磷酸化分布和稳定性改变以及昼夜节律反馈回路中的dPER功能受损,这表现为分子节律性改变和昼夜节律行为输出。这项研究提供了一个体内实例,证明了密码子用法在确定动物系统蛋白质结构和功能中的作用。这些结果表明了真核生物中的通用机制,该机制使用遗传密码子中的密码子使用“代码”来调节共翻译蛋白折叠。

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