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Structural insight into gene transcriptional regulation and effector binding by the Lrp/AsnC family

机译:Lrp / AsnC家族对基因转录调控和效应子结合的结构见解

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摘要

The Lrp/AsnC family of transcriptional regulatory proteins is found in both archaea and bacteria. Members of the family influence cellular metabolism in both a global (Lrp) and specific (AsnC) manner, often in response to exogenous amino acid effectors. In the present study we have determined both the first bacterial and the highest resolution structures for members of the family. Escherichia coli AsnC is a specific gene regulator whose activity is triggered by asparagine binding. Bacillus subtilis LrpC is a global regulator involved in chromosome condensation. Our AsnC-asparagine structure is the first for a regulator–effector complex and is revealed as an octameric disc. Key ligand recognition residues are identified together with a route for ligand access. The LrpC structure reveals a stable octamer supportive of a topological role in dynamic DNA packaging. The structures yield significant clues to the functionality of Lrp/AsnC-type regulators with respect to ligand binding and oligomerization states as well as to their role in specific and global DNA regulation.
机译:Lrp / AsnC转录调节蛋白家族发现于古细菌和细菌中。该家族的成员通常以对外部氨基酸效应物的反应来以整体(Lrp)和特异性(AsnC)的方式影响细胞代谢。在本研究中,我们已经确定了该家族成员的第一个细菌和最高分辨率的结构。大肠杆菌AsnC是一种特定的基因调节剂,其活性由天冬酰胺结合触发。枯草芽孢杆菌LrpC是参与染色体浓缩的全局调节剂。我们的AsnC-天冬酰胺结构是第一个调节子-效应子复合物,显示为八聚体圆盘。识别关键配体识别残基以及配体接近途径。 LrpC结构揭示了稳定的八聚体,支持动态DNA包装中的拓扑作用。该结构为Lrp / AsnC型调节子的功能提供了重要线索,涉及配体结合和低聚状态,以及它们在特异性和全局DNA调节中的作用。

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