Najafabadi Hamed Shateri, Goodarzi Hani, Torabi Noorossadat
Department of Biotechnology, Faculty of Science, University of Tehran, Enghelab Ave., Tehran, Iran.
J Theor Biol. 2005 Nov 21;237(2):203-9. doi: 10.1016/j.jtbi.2005.04.007. Epub 2005 Jun 1.
The canonical genetic code is known to be highly efficient in minimizing the effects of mistranslational errors and point mutations, an ability which in term is designated "load minimization". One parameter involved in calculating the load minimizing property of the genetic code is codon usage. In most bacteria, synonymous codons are not used with equal frequencies. Different factors have been proposed to contribute to codon usage preference. It has been shown that the codon preference is correlated with the composition of the tRNA pool. Selection for translational efficiency and translational accuracy both result in such a correlation. In this work, it is shown that codon usage bias in Escherichia coli works so as to minimize the consequences of translational errors, i.e. optimized for load minimization.
众所周知,标准遗传密码在将错译错误和点突变的影响降至最低方面效率极高,这种能力被称为“负载最小化”。计算遗传密码负载最小化特性所涉及的一个参数是密码子使用情况。在大多数细菌中,同义密码子的使用频率并不相同。人们提出了不同因素来解释密码子使用偏好。研究表明,密码子偏好与tRNA库的组成相关。对翻译效率和翻译准确性的选择都会导致这种相关性。在这项研究中,结果表明大肠杆菌中的密码子使用偏好能够将翻译错误的后果降至最低,即为负载最小化进行了优化。