Department of interventional radiology, The Affiliated Hospital of Qingdao University, Qingdao, China.
BMC Cancer. 2021 Apr 9;21(1):388. doi: 10.1186/s12885-021-08131-w.
Synonymous mutations do not change the protein sequences. Automatically, they have been regarded as neutral events and are ignored in the mutation-based cancer studies. However, synonymous mutations will change the codon optimality, resulting in altered translational velocity.
We fully utilized the transcriptome and translatome of liver cancer and normal tissue from ten patients. We profiled the mutation spectrum and examined the effect of synonymous mutations on translational velocity.
Synonymous mutations that increase the codon optimality significantly enhanced the translational velocity, and were enriched in oncogenes. Meanwhile, synonymous mutations decreasing codon optimality slowed down translation, and were enriched in tumor suppressor genes. These synonymous mutations significantly contributed to the translational changes in tumor samples compared to normal samples.
Synonymous mutations might play a role in liver cancer development by altering codon optimality and translational velocity. Synonymous mutations should no longer be ignored in the genome-wide studies.
同义突变不会改变蛋白质序列。因此,它们通常被视为中性事件,在基于突变的癌症研究中被忽略。然而,同义突变会改变密码子的最优性,从而导致翻译速度的改变。
我们充分利用了来自十个患者的肝癌组织和正常组织的转录组和翻译组数据。我们对突变谱进行了分析,并研究了同义突变对翻译速度的影响。
显著增加密码子最优性的同义突变显著提高了翻译速度,并在癌基因中富集。同时,降低密码子最优性的同义突变会减缓翻译速度,并在肿瘤抑制基因中富集。与正常样本相比,这些同义突变在肿瘤样本中显著导致了翻译变化。
同义突变通过改变密码子最优性和翻译速度可能在肝癌的发展中发挥作用。在全基因组研究中,同义突变不应再被忽视。