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Serum albumin alters the expression of iron-controlled genes in Pseudomonas aeruginosa

机译:血清白蛋白改变了铜绿假单胞菌的铁控基因的表达

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Pseudomonas aeruginosa, which causes serious infections in immunocompromised patients, produces numerous virulence factors, including exotoxin A and the siderophore pyoverdine. As production of these virulence factors is influenced by the host environment, we examined the effect serum has on global transcription within P. aeruginosa strain PAO1 at different phases of growth in an iron-deficient medium. At early exponential phase, serum significantly enhanced expression of 138 genes, most of which are repressed by iron, including pvdS, regA and the pyoverdine synthesis genes. However, serum did not interfere with the repression of these genes by iron. Serum enhanced regA expression in a fur mutant of PAO1 but not in a pvdS mutant. The serum iron-binding protein apotransferrin, but not ferritin, enhanced regA and pvdS expression. However, in PAO1 grown in a chemically defined medium that contains no iron, serum but not apotransferrin enhanced pvdS and regA expression. While complement inactivation failed to eliminate this effect, albumin absorption reduced the effect of serum on pvdS and regA expression in the iron-deficient medium chelexed tryptic soy broth dialysate. Additionally, albumin absorption eliminated the effect of serum on pvdS and regA expression in the chemically defined medium. These results suggest that serum enhances the expression of P. aeruginosa iron-controlled genes by two mechanisms: one through apotransferrin and another one through albumin.
机译:假单胞菌铜绿假单胞菌导致免疫疗效严重感染,产生多种毒力因子,包括外毒素A和冰晶型百倍。随着这些毒力因子的产生受到宿主环境的影响,我们研究了血清在铜缺乏介质中生长的不同阶段的P.铜绿假单胞菌菌株PAO1内对全局转录的影响。在早期指数阶段,血清显着增强了138个基因的表达,其中大部分由铁抑制,包括PVDS,Rega和Pyoverdine合成基因。然而,血清并没有干扰铁的抑制这些基因。血清增强了PaO1的毛虫突变体中的Rega表达,但不在PVDS突变体中。血清铁结合蛋白鼻转过蛋白,但不是铁蛋白,增强的Rega和PVDS表达。然而,在Pao1中生长在含有没有铁的化学定义的培养基中,血清但不增强PVD和Rega表达。虽然补体失活未能消除这种效果,但白蛋白吸收降低了铁缺陷介质嵌入式胰蛋白酶汤透析液中血清对PVDS和Rega表达的影响。另外,白蛋白吸收消除了血清对化学定义的培养基中PVD和Rega表达的影响。这些结果表明,血清通过两种机制增强了P.铜绿素控制基因的表达:一种通过翼霉菌素和另一种通过白蛋白。

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