Institut Pasteur, Unité Biologie Moléculaire du Gène chez les Extrémophiles, Département de Microbiologie, Paris, France.
J Virol. 2013 Jan;87(1):124-36. doi: 10.1128/JVI.01306-12. Epub 2012 Oct 10.
The structural and functional analysis of the protein AvtR encoded by Acidianus filamentous virus 6 (AFV6), which infects the archaeal genus Acidianus, revealed its unusual structure and involvement in transcriptional regulation of several viral genes. The crystal structure of AvtR (100 amino acids) at 2.6-Å resolution shows that it is constituted of a repeated ribbon-helix-helix (RHH) motif, which is found in a large family of bacterial transcriptional regulators. The known RHH proteins form dimers that interact with DNA using their ribbon to create a central β-sheet. The repeated RHH motifs of AvtR superpose well on such dimers, but its central sheet contains an extra strand, suggesting either conformational changes or a different mode of DNA binding. Systematic evolution of ligands by exponential enrichment (SELEX) experiments combined with systematic mutational and computational analysis of the predicted site revealed 8 potential AvtR targets in the AFV6 genome. Two of these targets were studied in detail, and the complex role of AvtR in the transcriptional regulation of viral genes was established. Repressing transcription from its own gene, gp29, AvtR can also act as an activator of another gene, gp30. Its binding sites are distant from both genes' TATA boxes, and the mechanism of AvtR-dependent regulation appears to include protein oligomerization starting from the protein's initial binding sites. Many RHH transcriptional regulators of archaeal viruses could share this regulatory mechanism.
丝状嗜热嗜酸古菌病毒 6(AFV6)编码的蛋白 AvtR 的结构和功能分析,该病毒感染古菌属嗜热嗜酸古菌,揭示了其不寻常的结构和参与几个病毒基因的转录调控。AvtR(100 个氨基酸)的晶体结构在 2.6-Å 分辨率下显示,它由一个重复的带状螺旋-螺旋(RHH)基序构成,该基序存在于一大类细菌转录调节剂中。已知的 RHH 蛋白形成二聚体,通过其带状结构与 DNA 相互作用,形成中央 β-片层。AvtR 的重复 RHH 基序与这些二聚体很好地重叠,但它的中央片层包含一个额外的链,这表明可能发生构象变化或不同的 DNA 结合模式。通过指数富集的配体系统进化(SELEX)实验与对预测位点的系统突变和计算分析相结合,在 AFV6 基因组中发现了 8 个潜在的 AvtR 靶标。其中两个靶标进行了详细研究,确立了 AvtR 在病毒基因转录调控中的复杂作用。AvtR 抑制自身基因 gp29 的转录,也可以作为另一个基因 gp30 的激活剂。其结合位点远离两个基因的 TATA 盒,AvtR 依赖性调节的机制似乎包括从蛋白质的初始结合位点开始的蛋白质寡聚化。许多古菌病毒的 RHH 转录调节剂可能具有这种调节机制。