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表达周质鞭毛的猪痢疾蛇形螺旋体双flaA1 flaB1突变体在猪痢疾小鼠模型中严重减毒。

Dual flaA1 flaB1 mutant of Serpulina hyodysenteriae expressing periplasmic flagella is severely attenuated in a murine model of swine dysentery.

作者信息

Rosey E L, Kennedy M J, Yancey R J

机构信息

Veterinary Infectious Diseases, Pharmacia and Upjohn, Inc., Kalamazoo, Michigan 49001, USA.

出版信息

Infect Immun. 1996 Oct;64(10):4154-62. doi: 10.1128/iai.64.10.4154-4162.1996.

Abstract

The motility imparted by the periplasmic flagella (PF) of Serpulina hyodysenteriae is thought to play a pivotal role in the enteropathogenicity of this spirochete. The complex PF are composed of multiple class A and class B polypeptides. Isogenic strains containing specifically disrupted flaAl or flaB1 alleles remain capable of expressing PF, although such mutants display aberrant motility in vitro. To further examine the role that these proteins play in the maintenance of periplasmic flagellar structural integrity, motility, and fitness for intestinal colonization, we constructed a novel strain of S. hyodysenteriae which is deficient in both FlaA1 and FlaB1. To facilitate construction of this strain, a chloramphenicol gene cassette, with general application as a selectable marker in prokaryotes, was developed. The cloned flaAl and flaB1 genes were disrupted by replacement of internal fragments with chloramphenicol and kanamycin gene cassettes, respectively. The inactivated flagellar genes were introduced into S. hyodysenteriae, and allelic exchange at the targeted chromosomal flaA1 and flaB1 loci was verified by PCR analysis. Immunoblots or cell lysates with antiserum raised against purified FlaA or FlaB confirmed the absence of the corresponding sheath and core proteins in this dual flagellar mutant. These mutations selectively abolished the expression of the targeted genes without affecting the synthesis of other immunologically related FlaB proteins. The resulting flaA1 flaB1 mutant exhibited altered motility in vitro. Surprisingly, it was capable of assembling periplasmic flagella that were morphologically normal as evidenced by electron microscopy. The virulence of this strain was assessed in a murine model of swine dysentery by determining the incidence of cecal lesions and the persistence of S. hyodysenteriae in the gut. Mice challenged with the wild-type strain or a passage control strain showed a dose-related response to the challenge organism. The dual flagellar mutant was severely attenuated in murine challenge experiments, suggesting that the FlaA1 and FlaB1 proteins are dispensable for flagellar assembly but critical for normal flagellar function and colonization of mucosal surfaces of the gastrointestinal tract. This strain represents the first spirochete engineered to contain specifically defined mutations in more than one genetic locus.

摘要

猪痢疾蛇形螺旋体的周质鞭毛(PF)赋予的运动性被认为在这种螺旋体的肠道致病性中起关键作用。复杂的PF由多种A类和B类多肽组成。含有特异性破坏的flaAl或flaB1等位基因的同基因菌株仍能够表达PF,尽管此类突变体在体外表现出异常运动性。为了进一步研究这些蛋白质在维持周质鞭毛结构完整性、运动性以及肠道定植适应性方面所起的作用,我们构建了一种新型的猪痢疾蛇形螺旋体菌株,该菌株在FlaA1和FlaB1方面均有缺陷。为便于构建该菌株,开发了一种氯霉素基因盒,它在原核生物中普遍用作选择标记。通过分别用氯霉素和卡那霉素基因盒替换内部片段,克隆的flaAl和flaB1基因被破坏。将失活的鞭毛基因导入猪痢疾蛇形螺旋体,并通过PCR分析验证在目标染色体flaA1和flaB1位点的等位基因交换。用针对纯化的FlaA或FlaB产生的抗血清对细胞裂解物进行免疫印迹,证实该双鞭毛突变体中不存在相应的鞘蛋白和核心蛋白。这些突变选择性地消除了目标基因的表达,而不影响其他免疫相关FlaB蛋白的合成。所得的flaA1 flaB1突变体在体外表现出改变的运动性。令人惊讶的是,通过电子显微镜观察证明它能够组装形态正常的周质鞭毛。通过确定盲肠病变的发生率和猪痢疾蛇形螺旋体在肠道中的持久性,在猪痢疾的小鼠模型中评估了该菌株的毒力。用野生型菌株或传代对照菌株攻击的小鼠对攻击生物体表现出剂量相关反应。在小鼠攻击实验中,双鞭毛突变体严重减毒,这表明FlaA1和FlaB1蛋白对于鞭毛组装是可有可无的,但对于正常鞭毛功能和胃肠道粘膜表面的定植至关重要。该菌株代表了第一种经过基因工程改造的螺旋体,其在多个基因位点含有特定定义的突变。

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Motility and chemotaxis in Serpulina hyodysenteriae.猪痢疾蛇形螺旋体的运动性和趋化性。
Vet Microbiol. 1996 Mar;49(1-2):21-30. doi: 10.1016/0378-1135(95)00174-3.
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