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首页> 外文期刊>Applied and Environmental Microbiology >Isolation and Functional Analysis of a Gene, tcsB, Encoding a Transmembrane Hybrid-Type Histidine Kinase from Aspergillus nidulans
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Isolation and Functional Analysis of a Gene, tcsB, Encoding a Transmembrane Hybrid-Type Histidine Kinase from Aspergillus nidulans

机译:构巢曲霉中跨膜杂交型组氨酸激酶编码基因tcsB的分离和功能分析

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摘要

We cloned and characterized a novel Aspergillus nidulans histidine kinase gene, tcsB, encoding a membrane-type two-component signaling protein homologous to the yeast osmosensor synthetic lethal N-end rule protein 1 (SLN1), which transmits signals through the high-osmolarity glycerol response 1 (HOG1) mitogen-activated protein kinase (MAPK) cascade in yeast cells in response to environmental osmotic stimuli. From an A. nidulans cDNA library, we isolated a positive clone containing a 3,210-bp open reading frame that encoded a putative protein consisting of 1,070 amino acids. The predicted tcsB protein (TcsB) has two probable transmembrane regions in its N-terminal half and has a high degree of structural similarity to yeast Sln1p, a transmembrane hybrid-type histidine kinase. Overexpression of the tcsB cDNA suppressed the lethality of a temperature-sensitive osmosensing-defective sln1-ts yeast mutant. However, tcsB cDNAs in which the conserved phosphorylation site His552 residue or the phosphorelay site Asp989 residue had been replaced failed to complement the sln1-ts mutant. In addition, introduction of the tcsB cDNA into an sln1Δ sho1Δ yeast double mutant, which lacked two osmosensors, suppressed lethality in high-salinity media and activated the HOG1 MAPK. These results imply that TcsB functions as an osmosensor histidine kinase. We constructed an A. nidulans strain lacking the tcsB gene (tcsBΔ) and examined its phenotype. However, unexpectedly, the tcsBΔ strain did not exhibit a detectable phenotype for either hyphal development or morphology on standard or stress media. Our results suggest that A. nidulans has more complex and robust osmoregulatory systems than the yeast SLN1-HOG1 MAPK cascade.
机译:我们克隆并鉴定了一个新的构巢曲霉组氨酸激酶基因 tcsB ,该基因编码与酵母渗透传感器合成的致死性N端规则蛋白同源的膜型两组分信号蛋白。 1( SLN1 ),它通过高渗透性甘油应答1( HOG1 )丝裂原激活的蛋白激酶(MAPK)在环境中渗透,从而在酵母细胞中级联传递信号刺激。从 A。 nidulans cDNA文库中,我们分离出一个阳性克隆,该克隆含有一个3,210 bp的开放阅读框,该框架编码一个由1,070个氨基酸组成的推定蛋白质。预测的 tcsB 蛋白(TcsB)在其N端一半具有两个可能的跨膜区域,并且与酵母Sln1p(一种跨膜杂交型组氨酸激酶)具有高度的结构相似性。 tcsB cDNA的过表达抑制了温度敏感的渗透敏感缺陷型 sln1-ts 酵母突变体的致死性。但是,替换了保守的磷酸化位点His 552 残基或磷酰基位点Asp 989 残基的 tcsB cDNA无法补充 > sln1-ts 突变体。此外,将 tcsB cDNA导入 sln1 Δ sho1 Δ酵母双突变体,该突变体缺少两个渗透传感器,可抑制高盐度致死性并激活HOG1 MAPK。这些结果暗示TcsB起渗透传感器组氨酸激酶的作用。我们构造了一个 A。缺乏 tcsB 基因( tcsB Δ)的nidulans 菌株,并对其表型进行了研究。然而,出乎意料的是, tcsB Δ菌株在标准或压力培养基上均未表现出可检测到的菌丝发育或形态的表型。我们的结果表明 A。与酵母SLN1-HOG1 MAPK级联反应相比,nidulans 具有更复杂,更强大的渗透调节系统。

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