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Mutational Analysis of a Conserved Signal-Transducing Element: the HAMP Linker of the Escherichia coli Nitrate Sensor NarX

机译:保守信号转导元件的突变分析:大肠杆菌硝酸盐传感器NarX的HAMP接头

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摘要

The HAMP linker, a predicted structural element observed in sensor proteins from all domains of life, is proposed to transmit signals between extracellular sensory input domains and cytoplasmic output domains. HAMP (histidine kinase, adenylyl cyclase, methyl-accepting chemotaxis protein, and phosphatase) linkers are located just inside the cytoplasmic membrane and are projected to form two short amphipathic α-helices (AS-1 and AS-2) joined by an unstructured connector. The presumed helices are comprised of hydrophobic residues in heptad repeats, with only three positions exhibiting strong conservation. We generated missense mutations at these three positions and throughout the HAMP linker in the Escherichia coli nitrate sensor kinase NarX and screened the resulting mutants for defective responses to nitrate. Most missense mutations in this region resulted in a constitutive phenotype mimicking the ligand-bound state, and only one residue (a conserved Glu before AS-2) was essential for HAMP linker function. We also scanned the narX HAMP linker with an overlapping set of seven-residue deletions. Deletions in AS-1 and the connector resulted in constitutive phenotypes. Two deletions in AS-2 resulted in a novel reversed response phenotype in which the response to ligand was the opposite of that seen for the narX+ strain. These observations are consistent with the proposed HAMP linker structure, show that the HAMP linker plays an active role in transmembrane signal transduction, and indicate that the two amphipathic α-helices have different roles in signal transduction.
机译:HAMP接头是在生命各个领域的传感器蛋白中观察到的一种预测结构元素,被提议在细胞外感觉输入域和胞质输出域之间传递信号。 HAMP(组氨酸激酶,腺苷酸环化酶,接受甲基的趋化蛋白和磷酸酶)接头位于细胞质膜的内部,预计会形成两个短的两亲性α-螺旋(AS-1和AS-2),由非结构化连接器连接。推测的螺旋由七残基重复序列中的疏水残基组成,只有三个位置表现出很强的保守性。我们在这三个位置以及整个HAMP接头的大肠杆菌硝酸盐传感器激酶NarX中产生了错义突变,并筛选了产生的突变株对硝酸盐的缺陷反应。该区域中的大多数错义突变导致模拟配体结合状态的组成型表型,只有一个残基(AS-2之前的保守Glu)对于HAMP接头功能至关重要。我们还扫描了narX HAMP链接器,其中包含七个残基缺失的重叠集合。 AS-1和连接器的缺失导致本构表型。 AS-2中的两个缺失导致了新的逆向反应表型,其中对配体的反应与narX +菌株的反应相反。这些观察结果与提出的HAMP接头结构一致,表明HAMP接头在跨膜信号转导中起积极作用,并且表明两个两亲性α-螺旋在信号转导中具有不同的作用。

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