The Department of Biomedical Engineering, Tel-Aviv University, Tel-Aviv, Israel.
PLoS Comput Biol. 2012;8(11):e1002755. doi: 10.1371/journal.pcbi.1002755. Epub 2012 Nov 1.
Ribosomal profiling is a promising approach with increasing popularity for studying translation. This approach enables monitoring the ribosomal density along genes at a resolution of single nucleotides.In this study, we focused on ribosomal density profiles of mouse embryonic stem cells. Our analysis suggests, for the first time, that even in mammals such as M. musculus the elongation speed is significantly and directly affected by determinants of the coding sequence such as: 1) the adaptation of codons to the tRNA pool; 2) the local mRNA folding of the coding sequence; 3) the local charge of amino acids encoded in the codon sequence. In addition, our analyses suggest that in general, the translation velocity of ribosomes is slower at the beginning of the coding sequence and tends to increase downstream.Finally, a comparison of these data to the expected biophysical behavior of translation suggests that it suffers from some unknown biases. Specifically, the ribosomal flux measured on the experimental data increases along the coding sequence; however, according to any biophysical model of ribosomal movement lacking internal initiation sites, the flux is expected to remain constant or decrease. Thus, developing experimental and/or statistical methods for understanding, detecting and dealing with such biases is of high importance.
核糖体谱分析是一种很有前途的研究翻译的方法,越来越受欢迎。这种方法可以监测基因上的核糖体密度,分辨率达到单个核苷酸。在这项研究中,我们专注于小鼠胚胎干细胞的核糖体密度谱。我们的分析首次表明,即使在像 M. musculus 这样的哺乳动物中,延伸速度也会受到编码序列决定因素的显著直接影响,这些因素包括:1)密码子对 tRNA 池的适应性;2)编码序列的局部 mRNA 折叠;3)密码子序列中编码的氨基酸的局部电荷。此外,我们的分析还表明,一般来说,核糖体在编码序列的起始处的翻译速度较慢,并倾向于向下游增加。最后,将这些数据与翻译的预期生物物理行为进行比较表明,它受到一些未知偏差的影响。具体来说,根据任何缺乏内部起始位点的核糖体运动的生物物理模型,测量的核糖体通量沿编码序列增加;然而,预计通量保持不变或减少。因此,开发用于理解、检测和处理这种偏差的实验和/或统计方法非常重要。