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Altered DNA binding specificity of Arnt by selection of partner bHLH–PAS proteins

机译:通过选择伴侣bHLH–PAS蛋白改变了Arnt的DNA结合特异性

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摘要

The Ah receptor (AhR) and HLF are transcription factors involved in xenobiotic metabolism and hypoxic response, respectively. AhR and HLF heterodimerize with Arnt as the common partner, and bind to asymmetric E-boxes termed XRE and HRE, respectively. In order to investigate nucleotide preference of the heterodimers, reporter plasmids with oligonucleotides for XREs or HREs with systematic mutations were constructed and their activity was determined. Comparison of the activity revealed that DNA length and nucleotide preference recognized by Arnt subunit in the two heterodimers were largely different between XRE and HRE. We expressed AhR–Arnt and HLF–Arnt in Escherichia coli and used them for DNA binding. The dissociation constant of HLF–Arnt–HRE was 10.4 ± 1.6 nM. Competition activity of mutated XREs or HREs with wild type was consistent with their transcription activity. Bending of XRE and HRE induced by binding of the relevant heterodimers was observed with stronger bending of XRE than of HRE. By deletional and mutational analyses, an alanine and three arginine (Ala 8, Arg 9, Arg 11 and Arg 12) residues in the basic sequence of HLF were found to be indispensable for the transcriptional activity.
机译:Ah受体(AhR)和HLF分别是异源生物代谢和缺氧反应中涉及的转录因子。 AhR和HLF与Arnt作为共同伴侣异源二聚体,并分别结合到称为XRE和HRE的不对称E-box上。为了研究异二聚体的核苷酸偏爱,构建了具有系统突变的带有XRE或HRE的寡核苷酸的报告质粒,并确定了它们的活性。活性的比较表明,XRE和HRE之间两个异二聚体中Arnt亚基识别的DNA长度和核苷酸偏好存在很大差异。我们在大肠杆菌中表达了AhR–Arnt和HLF–Arnt,并将它们用于DNA结合。 HLF–Arnt–HRE的解离常数为10.4±1.6 nM。具有野生型的突变XRE或HRE的竞争活性与其转录活性一致。观察到由相关异二聚体的结合诱导的XRE和HRE的弯曲比XRE的弯曲更强。通过缺失和突变分析,发现HLF的基本序列中的丙氨酸和三个精氨酸(Ala 8,Arg 9,Arg 11和Arg 12)残基对于转录活性是必不可少的。

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