首页> 美国卫生研究院文献>Acta Crystallographica Section F: Structural Biology and Crystallization Communications >Oligomerization of BenM a LysR-type transcriptional regulator: structural basis for the aggregation of proteins in this family
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Oligomerization of BenM a LysR-type transcriptional regulator: structural basis for the aggregation of proteins in this family

机译:BenMLysR型转录调节剂的寡聚化:该家族中蛋白质聚集的结构基础

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摘要

LysR-type transcriptional regulators comprise the largest family of homologous regulatory DNA-binding proteins in bacteria. A problematic challenge in the crystallization of LysR-type regulators stems from the insolubility and precipitation difficulties encountered with high concentrations of the full-length versions of these proteins. A general oligomerization scheme is proposed for this protein family based on the structures of the effector-binding domain of BenM in two different space groups, P4322 and C2221. These structures used the same oligomerization scheme of dimer–dimer interactions as another LysR-type regulator, CbnR, the full-length structure of which is available [Muraoka et al. (2003), J. Mol. Biol. >328, 555–566]. Evaluation of packing relationships and surface features suggests that BenM can form infinite oligomeric arrays in crystals through these dimer–dimer interactions. By extrapolation to the liquid phase, such dimer–dimer interactions may contribute to the significant difficulty in crystallizing full-length members of this family. The oligomerization of dimeric units to form biologically important tetramers appears to leave unsatisfied oligomerization sites. Under conditions that favor association, such as neutral pH and concentrations appropriate for crystallization, higher order oligomerization could cause solubility problems with purified proteins. A detailed model by which BenM and other LysR-type transcriptional regulators may form these arrays is proposed.
机译:LysR型转录调节因子包含细菌中最大的同源调节DNA结合蛋白家族。 LysR-型调节剂的结晶中的一个难题挑战源于高浓度的这些蛋白全长形式遇到的不溶性和沉淀困难。基于BenM在两个不同空间组(P4322和C2221)中效应子结合结构域的结构,提出了针对该蛋白家族的通用寡聚方案。这些结构使用的二聚体-二聚体相互作用的低聚方案与另一个LysR型调节剂CbnR相同,其全长结构是可用的[Muraoka等。 (2003),J.Mol。生物学> 328 ,555-566]。堆积关系和表面特征的评估表明,BenM可通过这些二聚体-二聚体相互作用在晶体中形成无限的低聚物阵列。通过外推至液相,这种二聚体-二聚体的相互作用可能会导致该家族全长成员结晶的巨大困难。二聚体单元的低聚形成生物学上重要的四聚体似乎留下了不满意的低聚位点。在有利于缔合的条件下,例如中性pH和适合结晶的浓度,更高阶的低聚可能导致纯化蛋白的溶解性问题。提出了BenM和其他LysR型转录调节因子可以形成这些阵列的详细模型。

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