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Identification and Characterization of a Hemolysin Gene Cluster in Vibrio anguillarum

机译:鳗弧菌溶血素基因簇的鉴定与表征

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摘要

Vibrio anguillarum is a causative agent of vibriosis in fish. Hemolytic activity has been suggested as a virulence factor by contributing to hemorrhagic septicemia and diarrhea. In order to identify and characterize the hemolysin genes and examine the role of hemolytic activity in virulence, a mini-Tn10Kan mutagenesis clone bank of V. anguillarum was screened. While no hemolysin-negative strains were observed, several mutants with two- to threefold-increased hemolytic activity were found. The region containing the insertion mutation was cloned, sequenced, and found to contain the V. anguillarum hemolysin (vah1) and two other open reading frames, coding for a putative lactonizing lipase (llpA) and a putative phospholipase (plp). The mini-Tn10Kan was inserted into plp. Site-directed mutagenesis of each gene revealed that mutations in vah1 and llpA did not affect hemolytic activity, but insertions into plp caused a two- to threefold increase in hemolysis. Double mutations in plp and either vah1 or llpA resulted in wild-type hemolytic activity. Complementation of plp restored hemolytic activity to wild-type levels. Spectrophotometric determination of hemolysin specific activity revealed that activity on a per cell basis peaked during the first 2 h of growth in LB20. Real-time quantitative reverse transcriptase PCR used to quantitate transcription of the hemolysin genes plp and vah1 in V. anguillarum wild-type strains M93Sm and NB10 revealed that transcription of plp and vah1 peaked at 2 h of growth in LB20. Additionally, expression of vah1 measured in the plp mutant strain, JL01, during the first 2 h of growth was >8 times higher than that in M93Sm. Mutations in plp and llpA did not affect virulence of V. anguillarum. The mutation in vah1 attenuated V. anguillarum virulence in fish. These data show that several genes are responsible for hemolytic activity in V. anguillarum. At least three genes (plp, llpA, and vah1) are responsible for one hemolytic activity. The data also suggest that plp acts as a negative regulator of vah1 and llpA.
机译:鳗弧菌是鱼类中弧菌病的病原体。已经提出溶血活性通过导致出血性败血病和腹泻而作为一种毒力因子。为了鉴定和表征溶血素基因,并检查溶血活性在毒力中的作用,筛选了一个迷你Tn10Kan诱变弧菌的克隆。虽然未观察到溶血素阴性菌株,但发现了一些溶血活性提高了两到三倍的突变体。克隆,测序包含插入突变的区域,发现该区域含有鳗弧菌溶血素(vah1)和其他两个开放阅读框,编码推定的内酯化脂肪酶(llpA)和推定的磷脂酶(plp)。将mini-Tn10Kan插入plp。每个基因的定点诱变显示,vah1和llpA中的突变不会影响溶血活性,但插入plp会导致溶血增加2至3倍。 plp和vah1或llpA的双重突变导致野生型溶血活性。 plp的补充可将溶血活性恢复至野生型水平。分光光度法测定溶血素的比活度表明,每个细胞的活度在LB20生长的前2小时内达到峰值。实时定量逆转录酶PCR用于定量安圭拉弧菌野生型菌株M93Sm和NB10中溶​​血素基因plp和vah1的转录,发现plp和vah1的转录在LB20生长2 h达到峰值。此外,在生长的前2小时内,在plp突变菌株JL01中测得的vah1表达比M93Sm中的表达高8倍以上。 plp和llpA的突变不会影响鳗弧菌的毒力。 vah1中的突变减弱了鱼类中的鳗弧菌毒力。这些数据表明,几个基因负责鳗弧菌的溶血活性。至少三个基因(plp,llpA和vah1)负责一种溶血活性。数据还表明,plp充当vah1和llpA的负调节剂。

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