首页> 美国卫生研究院文献>Journal of Bacteriology >Characterization of a locus determining the mucoid status of Pseudomonas aeruginosa: AlgU shows sequence similarities with a Bacillus sigma factor.
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Characterization of a locus determining the mucoid status of Pseudomonas aeruginosa: AlgU shows sequence similarities with a Bacillus sigma factor.

机译:确定铜绿假单胞菌黏液状态的基因座的表征:AlgU显示与芽孢杆菌sigma因子的序列相似性。

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摘要

Overproduction of the exopolysaccharide alginate by Pseudomonas aeruginosa results in mucoid colony morphology and is an important virulence determinant expressed by this organism in cystic fibrosis. Mucoidy is transcriptionally regulated by signal transduction systems and histone-like elements. One point of convergence of regulatory elements controlling mucoidy is the algD promoter. A newly described genetic locus required for algD transcription was characterized in this study. This DNA region, cloned from a nonmucoid PAO strain, was initially isolated on the basis of its ability to suppress mucoidy when present on a plasmid. The suppressing activity was observed in several mucoid PAO derivatives, including strain PAO568, in which the mapped muc-2 mutation is responsible for its mucoid phenotype, and in close to 40% of cystic fibrosis strains tested. Protein expression studies detected two polypeptides with apparent molecular masses of 27.5 and 20 kDa encoded by the region required for the suppression activity. The gene encoding the polypeptide with an apparent molecular mass of 27.5 kDa, termed algU, was further characterized. A functional chromosomal copy of algU was found to be necessary for the expression of mucoidy. Insertional inactivation of algU on the chromosome of the mucoid strain PAO568 abrogated alginate production and algD transcription. DNA sequence analysis revealed sequence similarity of the predicted algU gene product with sigma H (Spo0H), a sigma factor involved in the control of sporulation and competence in Bacillus spp. Physical mapping revealed that algU resided on the same SpeI fragment (F) as did the pruAB locus, known to be tightly linked with genetic determinants (muc) which can confer mucoidy in genetic crosses. When the chromosomal algU copy was tagged with a Tcr cassette (algU::Tcr), a tight genetic linkage of algU with pruAB was demonstrated by F116L-mediated generalized transduction. Moreover, algU::Tcr derivatives of PAO568 (originally carrying the muc-2 marker) lost the ability to transfer mucoidy in genetic crosses. These results suggest that algU, a regulator of algD transcription showing sequence similarity to an alternative sigma factor, and the genes immediately downstream of algU may be associated with a locus participating in the differentiation into the mucoid phenotype.
机译:铜绿假单胞菌过量生产藻酸胞外多糖导致粘液样菌落形态,并且是该生物体在囊性纤维化中表达的重要毒力决定因素。粘液质由信号转导系统和组蛋白样元件转录调控。控制粘液样的调节元件的收敛点之一是algD启动子。在这项研究中表征了algD转录所需的新描述的遗传基因座。从非粘液状PAO菌株克隆的该DNA区最初是基于其在质粒上存在时抑制粘液状的能力而分离的。在几种粘液状PAO衍生物中观察到了抑制活性,包括菌株PAO568,其中定位的muc-2突变是其粘液状表型的原因,在近40%的测试的囊性纤维化菌株中也观察到了抑制活性。蛋白质表达研究检测到两种多肽,其表观分子量分别为27.5和20 kDa,由抑制活性所需的区域编码。进一步表征了编码表观分子量为27.5 kDa的多肽的基因,称为algU。发现功能性的algU染色体拷贝对于表达粘液质是必需的。在粘液样菌株PAO568的染色体上,algU的插入失活消除了藻酸盐的产生和algD的转录。 DNA序列分析揭示了预测的algU基因产物与sigma H(Spo0H)的序列相似性,sigma H是参与芽孢杆菌属(Bacillus spp)孢子形成和能力控制的sigma因子。物理作图显示,algU与pruAB基因座存在于相同的SpeI片段(F)上,已知它与可在遗传杂交中赋予粘液状的遗传决定因子(muc)紧密相连。用Tcr盒(algU :: Tcr)标记染色体algU拷贝时,F116L介导的广义转导证明了algU与pruAB的紧密遗传联系。此外,PAO568的algU :: Tcr衍生物(最初带有muc-2标记)在遗传杂交中失去了转移粘液质的能力。这些结果表明,algD是一种algD转录调节因子,显示与替代的sigma因子具有序列相似性,而位于algU下游的基因可能与参与分化为粘液型表型的基因座相关。

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