Fongang Bernard, Kong Fanping, Negi Surendra, Braun Werner, Kudlicki Andrzej
Department of Biochemistry and Molecular Biology, University of Texas Medical Branch, Galveston, TX, USA.
Institute for Translational Sciences, University of Texas Medical Branch, Galveston, TX, USA.
Sci Rep. 2016 Oct 14;6:35415. doi: 10.1038/srep35415.
The homeobox encodes a DNA-binding domain found in transcription factors regulating key developmental processes. The most notable examples of homeobox containing genes are the Hox genes, arranged on chromosomes in the same order as their expression domains along the body axis. The mechanisms responsible for the synchronous regulation of Hox genes and the molecular function of their colinearity remain unknown. Here we report the discovery of a conserved structural signature of the 180-base pair DNA fragment comprising the homeobox. We demonstrate that the homeobox DNA has a characteristic 3-base-pair periodicity in the hydroxyl radical cleavage pattern. This periodic pattern is significant in most of the 39 mammalian Hox genes and in other homeobox-containing transcription factors. The signature is present in segmented bilaterian animals as evolutionarily distant as humans and flies. It remains conserved despite the fact that it would be disrupted by synonymous mutations, which raises the possibility of evolutionary selective pressure acting on the structure of the coding DNA. The homeobox coding DNA may therefore have a secondary function, possibly as a regulatory element. The existence of such element may have important consequences for understanding how these genes are regulated.
同源异型框编码一种存在于调控关键发育过程的转录因子中的DNA结合结构域。含有同源异型框的基因最显著的例子是Hox基因,它们在染色体上的排列顺序与其沿身体轴的表达结构域顺序相同。负责Hox基因同步调控的机制及其共线性的分子功能仍然未知。在此,我们报告发现了包含同源异型框的180个碱基对DNA片段的保守结构特征。我们证明,同源异型框DNA在羟基自由基切割模式中具有特征性的3碱基对周期性。这种周期性模式在39个哺乳动物Hox基因中的大多数以及其他含同源异型框的转录因子中都很显著。这种特征存在于像人类和果蝇这样进化距离遥远的两侧对称动物中。尽管它会被同义突变破坏,但仍然保守,这增加了进化选择压力作用于编码DNA结构的可能性。因此,同源异型框编码DNA可能具有次要功能,可能作为一种调控元件。这种元件的存在可能对理解这些基因如何被调控具有重要意义。