Stevenson Lindsay G, Rather Philip N
Department of Microbiology and Immunology, Emory University School of Medicine, 3001 Rollins Research Center, Atlanta, GA, USA.
J Bacteriol. 2006 Nov;188(22):7830-9. doi: 10.1128/JB.00979-06. Epub 2006 Sep 15.
In this study, we identified a transposon insertion in a novel gene, designated disA, that restored swarming motility to a putrescine-deficient speA mutant of Proteus mirabilis. A null allele in disA also increased swarming in a wild-type background. The DisA gene product was homologous to amino acid decarboxylases, and its role in regulating swarming was investigated by examining the expression of genes in the flagellar cascade. In a disA mutant background, we observed a 1.4-fold increase in the expression of flhDC, which encodes FlhD(2)C(2), the master regulator of the flagellar gene cascade. However, the expressions of class 2 (fliA, flgM) and class 3 (flaA) genes were at least 16-fold higher in the disA background during swarmer cell differentiation. Overexpression of DisA on a high-copy-number plasmid did not significantly decrease flhDC mRNA accumulation but resulted in a complete block in mRNA accumulation for both fliA and flaA. DisA overexpression also blocked swarmer cell differentiation. The disA gene was regulated during the swarming cycle, and a single-copy disA::lacZ fusion exhibited a threefold increase in expression in swarmer cells. Given that DisA was similar to amino acid decarboxylases, a panel of decarboxylated amino acids was tested for effects similar to DisA overexpression, and phenethylamine, the product of phenylalanine decarboxylation, was capable of inhibiting both swarming and the expression of class 2 and class 3 genes in the flagellar regulon. A DisA-dependent decarboxylated amino acid may inhibit the formation of active FlhD(2)C(2) heterotetramers or inhibit FlhD(2)C(2) binding to DNA.
在本研究中,我们在一个名为disA的新基因中鉴定出一个转座子插入,该插入使奇异变形杆菌的腐胺缺陷型speA突变体恢复了群游运动能力。disA中的无效等位基因在野生型背景下也增强了群游能力。DisA基因产物与氨基酸脱羧酶同源,通过检测鞭毛级联反应中基因的表达来研究其在调节群游中的作用。在disA突变体背景下,我们观察到编码鞭毛基因级联反应主调节因子FlhD(2)C(2)的flhDC表达增加了1.4倍。然而,在游动细胞分化过程中,disA背景下2类(fliA、flgM)和3类(flaA)基因的表达至少高16倍。在高拷贝数质粒上过表达DisA并没有显著降低flhDC mRNA的积累,但导致fliA和flaA的mRNA积累完全受阻。DisA过表达也阻断了游动细胞的分化。disA基因在群游周期中受到调控,单拷贝的disA::lacZ融合体在游动细胞中的表达增加了三倍。鉴于DisA与氨基酸脱羧酶相似,测试了一组脱羧氨基酸对类似于DisA过表达的影响,苯丙氨酸脱羧产物苯乙胺能够抑制群游以及鞭毛调节子中2类和3类基因的表达。一种依赖DisA的脱羧氨基酸可能会抑制活性FlhD(2)C(2)异源四聚体的形成或抑制FlhD(2)C(2)与DNA的结合。