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Comparing the fine specificity of DNA binding by NF-κB p50 and p52 using principal coordinates analysis

机译:使用主坐标分析比较NF-κBp50和p52与DNA结合的精细特异性

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摘要

Principal coordinates analysis has been proposed as an efficient way of predicting the binding affinity of a transcription factor to different DNA motifs, as it can model complex interactions that are difficult to represent with standard position-weight matrices. Here we evaluate its ability to distinguish the DNA binding properties of two closely related proteins, the homodimeric forms of NF-κB p50 and p52. When tested experimentally against 50 different variants of the generalised NF-κB motif GGRRNNYYCC, the binding specificities of p50 and p52 were similar but not identical (correlation ρ = 0.86). These experimental data can be modelled accurately with six principal coordinates that are similar for p50 and p52, plus one principal coordinate that is significantly stronger for p52 than for p50, relating to the inner positions of the binding site. These findings are compatible with crystallographic data showing that p52 has greater ability than p50 to form water molecule-mediated hydrogen bonds with inner nucleotide positions of the binding site.
机译:主坐标分析已被认为是预测转录因子与不同DNA图案结合亲和力的有效方法,因为它可以对复杂的相互作用进行建模,而这些相互作用很难用标准位置权重矩阵表示。在这里,我们评估了其区分两个密切相关的蛋白质(NF-κBp50和p52的同型二聚体形式)的DNA结合特性的能力。当针对广义NF-κB基序GGRRNNYYCC的50个不同变体进行实验测试时,p50和p52的结合特异性相似但不相同(相关ρ= 0.86)。这些实验数据可以用与p50和p52相似的六个主坐标精确地建模,再加上一个p52比p50明显更强的主坐标,涉及结合位点的内部位置。这些发现与晶体学数据是相容的,晶体学数据表明p52比p50具有更大的能力来形成具有结合位点的内部核苷酸位置的水分子介导的氢键。

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