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DNA binding properties of a chemically synthesized DNA binding domain of hRFX1.

机译:hRFX1的化学合成DNA结合域的DNA结合特性。

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摘要

The RFX DNA binding domain (DBD) is a novel highly conserved motif belonging to a large number of dimeric DNA binding proteins which have diverse regulatory functions in eukaryotic organisms, ranging from yeasts to human. To characterize this novel motif, solid phase synthesis of a 76mer polypeptide corresponding to the DBD of human hRFX1 (hRFX1/DBD), a prototypical member of the RFX family, has been optimized to yield large quantities (approximately 90 mg) of pure compound. Preliminary two-dimensional1H NMR experiments suggested the presence of helical regions in this sequence in agreement with previously reported secondary structure predictions. In gel mobility shift assays, this synthetic peptide was shown to bind in a cooperative manner the 23mer duplex oligodeoxynucleotide corresponding to the binding site of hRFX1, with a 2:1 stoichoimetry due to an inverse repeat present in the 23mer. The stoichiometry of this complex was reduced to 1:1 by decreasing the length of the DNA sequence to a 13mer oligonucleotide containing a single half-site. Surface plasmon resonance measurements were achieved using this 5'-biotylinated 13mer oligonucleotide immobilized on an avidin-coated sensor chip. Using this method an association constant (K a = 4 x 10(5)/M/s), a dissociation constant (K d = 6 x 10(-2)/s) and an equilibrium dissociation constant (K D = 153 nM) were determined for binding of hRFX1/DBD to the double-stranded 13mer oligonucleotide. In the presence of hRFX1/DBD the melting temperature of the 13mer DNA was increased by 16 degreesC, illustrating stabilization of the double-stranded conformation induced by the peptide.
机译:RFX DNA结合结构域(DBD)是一种新型的高度保守的基序,属于大量的二聚体DNA结合蛋白,这些蛋白在真核生物中具有多种调节功能,从酵母到人类。为了表征该新颖的基序,已优化了与人hRFX1的DBD(hRFX1 / DBD)(RFX家族的原型成员)相对应的76mer多肽的固相合成,以产生大量(约90 mg)纯化合物。初步的二维1 H NMR实验表明,该序列中存在螺旋区域,与先前报道的二级结构预测相符。在凝胶迁移率迁移分析中,该合成肽显示以协同方式结合对应于hRFX1结合位点的23mer双链寡聚脱氧核苷酸,由于23mer中存在反向重复,因此化学计量比为2:1。通过减少DNA序列的长度,使该复合物的化学计量比降低至1:1,该DNA序列的长度为包含一个半位点的13聚体寡核苷酸。使用固定在亲和素涂层的传感器芯片上的5'-生物素化的13mer寡核苷酸实现了表面等离子体共振测量。使用这种方法,缔合常数(K a = 4 x 10(5)/ M / s),解离常数(K d = 6 x 10(-2)/ s)和平衡解离常数(KD = 153 nM)确定hRFX1 / DBD与双链13mer寡核苷酸的结合。在hRFX1 / DBD的存在下,13mer DNA的解链温度提高了16℃,这说明了该肽诱导的双链构象的稳定。

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