首页> 外文期刊>Molecular and Cellular Biology >Pbx modulation of Hox homeodomain amino-terminal arms establishes different DNA-binding specificities across the Hox locus.
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Pbx modulation of Hox homeodomain amino-terminal arms establishes different DNA-binding specificities across the Hox locus.

机译:Hob同源域氨基末端臂的Pbx调节跨Hox基因座建立了不同的DNA结合特异性。

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Pbx cofactors are implicated to play important roles in modulating the DNA-binding properties of heterologous homeodomain proteins, including class I Hox proteins. To assess how Pbx proteins influence Hox DNA-binding specificity, we used a binding-site selection approach to determine high-affinity target sites recognized by various Pbx-Hox homeoprotein complexes. Pbx-Hox heterodimers preferred to bind a bipartite sequence 5'-ATGATTNATNN-3' consisting of two adjacent half sites in which the Pbx component of the heterodimer contacted the 5' half (ATGAT) and the Hox component contacted the more variable 3' half (TNATNN). Binding sites matching the consensus were also obtained for Pbx1 complexed with HoxA10, which lacks a hexapeptide but requires a conserved tryptophan-containing motif for cooperativity with Pbx. Interactions with Pbx were found to play an essential role in modulating Hox homeodomain amino-terminal arm contact with DNA in the core of the Hox half site such that heterodimers of different compositions could distinguish single nucleotide alterations in the Hox half site both in vitro and in cellular assays measuring transactivation. When complexed with Pbx, Hox proteins B1 through B9 and A10 showed stepwise differences in their preferences for nucleotides in the Hox half site core (TTAT to TGAT, 5' to 3') that correlated with the locations of their respective genes in the Hox cluster. These observations demonstrate previously undetected DNA-binding specificity for the amino-terminal arm of the Hox homeodomain and suggest that different binding activities of Pbx-Hox complexes are at least part of the position-specific activities of the Hox genes.
机译:Pbx辅因子在调节异源同源域蛋白(包括I类Hox蛋白)的DNA结合特性中起重要作用。为了评估Pbx蛋白质如何影响Hox DNA结合特异性,我们使用了结合位点选择方法来确定各种Pbx-Hox同源蛋白复合物识别的高亲和力靶位点。 Pbx-Hox异二聚体优选结合由两个相邻的半位组成的二分序列5'-ATGATTNATNN-3',其中异二聚体的Pbx组分接触5'一半(ATGAT),Hox组分接触更多可变的3'一半(TNATNN)。对于与HoxA10复合的Pbx1,也获得了与共有序列相匹配的结合位点,后者缺少六肽,但需要保守的含色氨酸基序才能与Pbx协同工作。发现与Pbx的相互作用在调节Hox半位点核心DNA中的Hox同源域氨基末端臂接触DNA中起着至关重要的作用,因此不同组成的异二聚体可以在体外和体外区分Hox半位点中的单个核苷酸改变。测量反式激活的细胞分析。当与Pbx复合时,Hox蛋白B1至B9和A10在Hox半位点核心(TTAT至TGAT,5'至3')中对核苷酸偏好的逐步差异与它们各自基因在Hox簇中的位置相关。这些观察结果证明了以前未检测到的对Hox同源域的氨基末端臂的DNA结合特异性,并表明Pbx-Hox复合物的不同结合活性至少是Hox基因的位置特异性活性的一部分。

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