Benevides James M, Serban Doinita, Thomas George J
School of Biological Sciences, University of Missouri-Kansas City, 5100 Rockhill Road, Kansas City, Missouri 64110-2499, USA.
Biochemistry. 2006 Apr 25;45(16):5359-66. doi: 10.1021/bi0523557.
HU is a small DNA-binding protein of eubacteria that is believed to induce or stabilize bending of the double helix and mediate nucleoid compaction in vivo. Although HU does not bind preferentially to specific DNA sequences, it is known to have high affinity for DNA sites containing structural anomalies, such as unpaired or mismatched bases, nicks, and four-way junctions. We have employed Raman spectroscopy to further investigate the structural basis of HU-DNA recognition in solution. Experiments were carried out on the homodimeric HU protein of Bacillus stearothermophilus (HUBst) and a 222-bp DNA fragment, which was isolated in linear (DNA(L222)) and circular (DNA(C222)) forms. In the absence of bound HUBst the Raman signatures of DNA(L222) and DNA(C222) are nearly superimposable, indicating that circularization produces no substantial change in the local B-DNA conformation. Conversely, the Raman signatures of DNA(L222) and DNA(C222) are perturbed significantly and specifically by HUBst binding. The HUBst-induced perturbations are markedly greater for the circularized DNA target. These results support an opportunistic molecular mechanism, in which HU binding is facilitated by intrinsic nonlinearity or flexibility in the DNA target. We propose that DNA segments which are bent or predisposed toward bending provide the high-affinity sites for HU attachment and nucleoid condensation. This model is consistent with the wide range of DNA bending angles reported in crystal structures of HU-DNA complexes.
HU是真细菌中的一种小DNA结合蛋白,据信它能诱导或稳定双螺旋的弯曲,并在体内介导类核压缩。尽管HU不会优先结合特定的DNA序列,但已知它对含有结构异常的DNA位点具有高亲和力,如未配对或错配的碱基、切口和四向连接。我们利用拉曼光谱进一步研究溶液中HU-DNA识别的结构基础。实验是针对嗜热脂肪芽孢杆菌的同二聚体HU蛋白(HUBst)和一个222碱基对的DNA片段进行的,该片段以线性(DNA(L222))和环状(DNA(C222))形式分离。在没有结合HUBst的情况下,DNA(L222)和DNA(C222)的拉曼特征几乎重叠,表明环化不会使局部B-DNA构象产生实质性变化。相反,DNA(L222)和DNA(C222)的拉曼特征因HUBst的结合而受到显著且特异性的扰动。对于环化的DNA靶标,HUBst诱导的扰动明显更大。这些结果支持一种机会主义分子机制,即DNA靶标的内在非线性或灵活性促进了HU的结合。我们提出,弯曲或易于弯曲的DNA片段为HU附着和类核凝聚提供了高亲和力位点。该模型与HU-DNA复合物晶体结构中报道的广泛DNA弯曲角度一致。