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对影响感染人类的疟原虫物种中同义密码子使用的因素的新见解。

New insights into the factors affecting synonymous codon usage in human infecting Plasmodium species.

作者信息

Gajbhiye Shivani, Patra P K, Yadav Manoj Kumar

机构信息

Department of Biochemistry, Pt. J.N.M. Medical College, Raipur, CG 492001, India.

Department of Biochemistry, Pt. J.N.M. Medical College, Raipur, CG 492001, India.

出版信息

Acta Trop. 2017 Dec;176:29-33. doi: 10.1016/j.actatropica.2017.07.025. Epub 2017 Jul 24.

Abstract

Codon usage bias is due to the non-random usage of synonymous codons for coding amino acids. The synonymous sites are under weak selection, and codon usage bias is maintained by the equilibrium in mutational bias, genetic drift and selection pressure. The differential codon usage choices are also relevant to human infecting Plasmodium species. Recently, P. knowlesi switches its natural host, long-tailed macaques, and starts infecting humans. This review focuses on the comparative analysis of codon usage choices among human infecting P. falciparum and P. vivax along with P. knowlesi species taking their coding sequence data. The variation in GC content, amino acid frequencies, effective number of codons and other factors plays a crucial role in determining synonymous codon choices. Within species codon choices are more similar for P. vivax and P. knowlesi in comparison with P. falciparum species. This study suggests that synonymous codon choice modulates the gene expression level, mRNA stability, ribosome speed, protein folding, translation efficiency and its accuracy in Plasmodium species, and provides a valuable information regarding the codon usage pattern to facilitate gene cloning as well as expression and transfection studies for malaria causing species.

摘要

密码子使用偏好是由于编码氨基酸的同义密码子的非随机使用所致。同义位点受到的选择较弱,密码子使用偏好通过突变偏好、遗传漂变和选择压力之间的平衡得以维持。不同的密码子使用选择也与感染人类的疟原虫物种有关。最近,诺氏疟原虫改变了其自然宿主——食蟹猴,并开始感染人类。本综述重点对感染人类的恶性疟原虫、间日疟原虫以及诺氏疟原虫的密码子使用选择进行比较分析,并获取它们的编码序列数据。GC含量、氨基酸频率、有效密码子数及其他因素的变化在决定同义密码子选择方面起着关键作用。在种内,与恶性疟原虫相比,间日疟原虫和诺氏疟原虫的密码子选择更为相似。本研究表明,同义密码子选择调节疟原虫物种中的基因表达水平、mRNA稳定性、核糖体速度、蛋白质折叠、翻译效率及其准确性,并提供了有关密码子使用模式的有价值信息,以促进疟原虫致病物种的基因克隆以及表达和转染研究。

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