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NasR 转录终止子抗阻遏蛋白的结构揭示了一种由硝酸盐受体 NIT 与 RNA 结合效应器 ANTAR 偶联的单组件系统。

The structure of the NasR transcription antiterminator reveals a one-component system with a NIT nitrate receptor coupled to an ANTAR RNA-binding effector.

机构信息

IBBMC-CNRS UMR8619, Bât. 430, Université Paris-Sud, 91405 Orsay, France.

出版信息

Mol Microbiol. 2012 Aug;85(3):431-44. doi: 10.1111/j.1365-2958.2012.08111.x. Epub 2012 Jun 12.

DOI:10.1111/j.1365-2958.2012.08111.x
PMID:22690729
Abstract

The nitrate- and nitrite-sensing NIT domain is present in diverse signal-transduction proteins across a wide range of bacterial species. NIT domain function was established through analysis of the Klebsiella oxytoca NasR protein, which controls expression of the nasF operon encoding enzymes for nitrite and nitrate assimilation. In the presence of nitrate or nitrite, the NasR protein inhibits transcription termination at the factor-independent terminator site in the nasF operon transcribed leader region. We present here the crystal structure of the intact NasR protein in the apo state. The dimeric all-helical protein contains a large amino-terminal NIT domain that associates two four-helix bundles, and a carboxyl-terminal ANTAR (AmiR and NasR transcription antitermination regulator) domain. The analysis reveals unexpectedly that the NIT domain is structurally similar to the periplasmic input domain of the NarX two-component sensor that regulates nitrate and nitrite respiration. This similarity suggests that the NIT domain binds nitrate and nitrite between two invariant arginyl residues located on adjacent alpha helices, and results from site-specific mutagenesis showed that these residues are critical for NasR function. The resulting structural movements in the NIT domain would provoke an active configuration of the ANTAR domains necessary for specific leader mRNA binding.

摘要

硝酸盐和亚硝酸盐感应的 NIT 结构域存在于多种信号转导蛋白中,分布于广泛的细菌物种。NIT 结构域的功能是通过分析产碱假单胞菌 NasR 蛋白来确定的,该蛋白控制着编码亚硝酸盐和硝酸盐同化酶的 nasF 操纵子的表达。在硝酸盐或亚硝酸盐存在的情况下,NasR 蛋白抑制了 nasF 操纵子转录前导区因子非依赖终止子位点的转录终止。我们在此展示了完整 NasR 蛋白在apo 状态下的晶体结构。二聚体全螺旋蛋白包含一个大的氨基端 NIT 结构域,该结构域与两个四螺旋束结合,羧基端是 ANTAR(AmiR 和 NasR 转录抗终止调节因子)结构域。分析结果出人意料地表明,NIT 结构域在结构上与调节硝酸盐和亚硝酸盐呼吸的 NarX 双组分传感器的周质输入结构域相似。这种相似性表明,NIT 结构域在两个相邻的α螺旋上的两个不变精氨酸残基之间结合硝酸盐和亚硝酸盐,并通过定点突变表明这些残基对 NasR 功能至关重要。NIT 结构域的这种结构运动将引发 ANTAR 结构域的活性构象,这对于特定的前导 mRNA 结合是必需的。

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