Monajemi Hadieh, Omar Nasr Y M, Daud Mohamad Noh, Zain Sharifuddin Mohd, Abdullah Wan Ahmad Tajuddin Wan
Department of Physics, Faculty of Science, University of Malaya, Kuala Lumpur, Malaysia.
Nucleosides Nucleotides Nucleic Acids. 2011 Sep;30(9):726-39. doi: 10.1080/15257770.2011.605780.
The proper arrangement of amino acids in a protein determines its proper function, which is vital for the cellular metabolism. This indicates that the process of peptide bond formation requires high fidelity. One of the most important processes for this fidelity is kinetic proofreading. As biochemical experiments suggest that kinetic proofreading plays a major role in ensuring the fidelity of protein synthesis, it is not certain whether or not a misacylated tRNA would be corrected by kinetic proofreading during the peptide bond formation. Using 2-layered ONIOM (QM/MM) computational calculations, we studied the behavior of misacylated tRNAs and compared the results with these for cognate aminoacyl-tRNAs during the process of peptide bond formation to investigate the effect of nonnative amino acids on tRNAs. The difference between the behavior of initiator tRNA(i) (met) compared to the one for the elongator tRNAs indicates that only the initiator tRNA(i) (met) specifies the amino acid side chain.
蛋白质中氨基酸的正确排列决定其正常功能,这对细胞代谢至关重要。这表明肽键形成过程需要高保真度。实现这种保真度的最重要过程之一是动力学校对。正如生化实验所表明的,动力学校对在确保蛋白质合成的保真度方面起着主要作用,但在肽键形成过程中,错误酰化的tRNA是否会通过动力学校对得到纠正尚不确定。我们使用两层ONIOM(量子力学/分子力学)计算方法,研究了错误酰化tRNA的行为,并在肽键形成过程中将结果与同源氨酰tRNA的结果进行比较,以研究非天然氨基酸对tRNA的影响。起始tRNA(i)(met)与延伸tRNA行为的差异表明,只有起始tRNA(i)(met)能指定氨基酸侧链。