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Hox proteins have different affinities for a consensus DNA site that correlate with the positions of their genes on the hox cluster.

机译:Hox蛋白对于共有DNA位点具有不同的亲和力,该位点与其基因在hox簇上的位置相关。

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The hox genes, members of a family of essential developmental regulators, have the intriguing property that their expression in the developing murine embryo is colinear with their chromosomal organization. Members of the hox gene family share a conserved DNA binding domain, termed the homeodomain, which mediates interactions of Hox proteins with DNA regulatory elements in the transcriptional control regions of target genes. In this study, we characterized the DNA binding properties of five representative members of the Hox family: HoxA5, HoxB4, HoxA7, HoxC8, and HoxB1. To facilitate a comparative analysis of their DNA binding properties, we produced the homeodomain regions of these Hox proteins in Escherichia coli and obtained highly purified polypeptides. We showed that these Hox proteins interact in vitro with a common consensus DNA site that contains the motif (C/G)TAATTG. We further showed that the Hox proteins recognize the consensus DNA site in vivo, as determined by their ability to activate transcription through this site in transient transfection assays. Although they interact optimally with the consensus DNA site, the Hox proteins exhibit subtle, but distinct, preferences for DNA sites that contain variations of the nucleotides within the consensus motif. In addition to their modest differences in DNA binding specificities, the Hox proteins also vary in their relative affinities for DNA. Intriguingly, their relative affinities correlate with the positions of their respective genes on the hox cluster. These findings suggest that subtle differences in DNA binding specificity combined with differences in DNA binding affinity constitute features of the "Hox code" that contribute to the selective functions of Hox proteins during murine embryogenesis.
机译:作为必需的发育调节子家族的成员,hox基因具有令人着迷的特性,即它们在发育中的鼠胚胎中的表达与其染色体组织共线。 hox基因家族的成员共享一个保守的DNA结合结构域,称为同源结构域,该结构域介导Hox蛋白与靶基因转录控制区中的DNA调控元件之间的相互作用。在这项研究中,我们表征了Hox家族的五个代表性成员的DNA结合特性:HoxA5,HoxB4,HoxA7,HoxC8和HoxB1。为了便于对其DNA结合特性进行比较分析,我们在大肠杆菌中产生了这些Hox蛋白的同源域区域,并获得了高度纯化的多肽。我们表明,这些Hox蛋白在体外与含有基序(C / G)TAATTG的共有共有DNA位点相互作用。我们进一步表明,Hox蛋白在体内识别共有的DNA位点,这取决于它们在瞬时转染测定中通过该位点激活转录的能力。尽管它们与共有DNA位点最佳相互作用,但Hox蛋白对包含共有基序内核苷酸变异的DNA位点表现出细微但独特的偏好。除了它们在DNA结合特异性上的适度差异外,Hox蛋白对DNA的相对亲和力也有所不同。有趣的是,它们的相对亲和力与其各自基因在hox簇上的位置相关。这些发现表明,DNA结合特异性的细微差异与DNA结合亲和力的差异共同构成了“ Hox密码”的特征,其在鼠胚发生过程中对Hox蛋白的选择性功能起作用。

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