Institute for Integrative Biology of the Cell (I2BC), CEA, CNRS, Univ. Paris-Sud, Université Paris-Saclay, 91198 Gif-sur-Yvette Cedex, France.
Institut de Chimie des Substances Naturelles, UPR2301, CNRS, Univ. Paris-Sud, Université Paris-Saclay, 91198 Gif-sur-Yvette Cedex, France.
Biochim Biophys Acta Proteins Proteom. 2018 Feb;1866(2):348-355. doi: 10.1016/j.bbapap.2017.10.007. Epub 2017 Oct 31.
Unexpected peptide deformylase (PDF) genes were recently retrieved in numerous marine phage genomes. While various hypotheses dealing with the occurrence of these intriguing sequences have been made, no further characterization and functional studies have been described thus far. In this study, we characterize the bacteriophage Vp16 PDF enzyme, as representative member of the newly identified C-terminally truncated viral PDFs. We show here that conditions classically used for bacterial PDFs lead to an enzyme exhibiting weak activity. Nonetheless, our integrated biophysical and biochemical approaches reveal specific effects of pH and metals on Vp16 PDF stability and activity. A novel purification protocol taking in account these data allowed strong improvement of Vp16 PDF specific activity to values similar to those of bacterial PDFs. We next show that Vp16 PDF is as sensitive to the natural inhibitor compound of PDFs, actinonin, as bacterial PDFs. Comparison of the 3D structures of Vp16 and E. coli PDFs bound to actinonin also reveals that both PDFs display identical substrate binding mode. We conclude that bacteriophage Vp16 PDF protein has functional peptide deformylase activity and we suggest that encoded phage PDFs might be important for viral fitness.
最近在大量海洋噬菌体基因组中发现了意想不到的肽脱甲酰酶(PDF)基因。虽然已经提出了各种关于这些有趣序列出现的假设,但迄今为止还没有进一步的特征描述和功能研究。在这项研究中,我们对噬菌体 Vp16 PDF 酶进行了表征,它是新鉴定的 C 端截断病毒 PDF 的代表性成员。我们在这里表明,经典用于细菌 PDF 的条件会导致酶活性较弱。尽管如此,我们综合的生物物理和生化方法揭示了 pH 值和金属对 Vp16 PDF 稳定性和活性的具体影响。考虑到这些数据的新型纯化方案允许强烈提高 Vp16 PDF 的比活性,使其达到与细菌 PDF 相似的值。我们接下来表明,Vp16 PDF 对 PDF 的天然抑制剂化合物放线菌素酮与细菌 PDF 一样敏感。Vp16 和大肠杆菌 PDF 与放线菌素酮结合的 3D 结构比较也表明,这两种 PDF 都显示出相同的底物结合模式。我们得出结论,噬菌体 Vp16 PDF 蛋白具有功能性肽脱甲酰酶活性,并且我们建议编码的噬菌体 PDF 可能对病毒适应性很重要。