首页> 美国卫生研究院文献>Infection and Immunity >Novel 45-Kilodalton Leptospiral Protein That Is Processed to a 31-Kilodalton Growth-Phase-Regulated Peripheral Membrane Protein
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Novel 45-Kilodalton Leptospiral Protein That Is Processed to a 31-Kilodalton Growth-Phase-Regulated Peripheral Membrane Protein

机译:新型的45千达尔顿钩端螺旋体蛋白它加工成31千达尔顿生长相调节的外周膜蛋白。

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摘要

Leptospiral protein antigens are of interest as potential virulence factors and as candidate serodiagnostic and immunoprotective reagents. We identified leptospiral protein antigens by screening a genomic expression library with serum from a rabbit hyperimmunized with formalin-killed, virulent Leptospira kirschneri serovar grippotyphosa. Genes expressing known outer membrane lipoproteins LipL32 and LipL41, the heat shock protein GroEL, and the α, β, and β′ subunits of RNA polymerase were isolated from the library. In addition, a new leptospiral gene that in Escherichia coli expressed a 45-kDa antigen with an amino-terminal signal peptide followed by the spirochetal lipobox Val−4-Phe−3-Asn−2-Ala−1↓Cys+1 was isolated. We designated this putative lipoprotein LipL45. Immunoblot analysis of a panel of Leptospira strains probed with LipL45 antiserum demonstrated that many low-passage strains expressed LipL45. In contrast, LipL45 was not detected in high-passage, culture-attenuated strains, suggesting that LipL45 is a virulence-associated protein. In addition, all leptospiral strains tested, irrespective of culture passage, expressed a 31-kDa antigen that was recognized by LipL45 antiserum. Southern blot and peptide mapping studies indicated that this 31-kDa antigen was derived from the carboxy terminus of LipL45; therefore, it was designated P31LipL45. Membrane fractionation studies demonstrated that P31LipL45 is a peripheral membrane protein. Finally, we found that P31LipL45 levels increased as Leptospira entered the stationary phase, indicating that P31LipL45 levels were regulated. Hamsters infected with L. kirschneri formed an antibody response to LipL45, indicating that LipL45 was expressed during infection. Furthermore, the immunohistochemistry of kidneys from infected hamsters indicated that LipL45 was expressed by L. kirschneri that colonized the renal tubule. These observations suggest that expression of LipL45 responds to environmental cues, including those encountered during infection of a mammalian host.
机译:钩端螺旋体蛋白抗原作为潜在的致病因子以及候选的血清诊断和免疫保护剂是令人感兴趣的。我们通过用来自福尔马林杀死的,有毒力的钩端螺旋体血清型钩端螺旋体超免疫的家兔的血清筛选基因组表达文库来鉴定钩端螺旋体蛋白抗原。从文库中分离出表达已知外膜脂蛋白LipL32和LipL41,热休克蛋白GroEL以及RNA聚合酶的α,β和β'亚基的基因。此外,还分离了一个新的钩端螺旋体基因,该基因在大肠杆菌中表达了一个带有氨基末端信号肽的45 kDa抗原,然后是螺旋形脂盒Val-4-Phe-3-Asn-2-Ala-1↓Cys + 1 。我们将这种推定的脂蛋白LipL45命名为。用LipL45抗血清探测的一组钩端螺旋体菌株的免疫印迹分析表明,许多低传代菌株均表达LipL45。相反,在高通量,培养减毒的菌株中未检测到LipL45,这表明LipL45是一种与毒力相关的蛋白。此外,所有受测试的钩端螺旋体菌株,无论培养途径如何,均表达可被LipL45抗血清识别的31 kDa抗原。 Southern印迹和肽图分析研究表明,该31 kDa抗原源自LipL45的羧基末端。因此,它被命名为P31LipL45。膜分离研究表明,P31LipL45是一种外周膜蛋白。最后,我们发现随着钩端螺旋体进入静止期,P31LipL45水平升高,表明P31LipL45水平受到调节。感染了克氏杆菌的仓鼠形成了对LipL45的抗体反应,表明LipL45在感染过程中表达。此外,来自被感染的仓鼠的肾脏的免疫组织化学表明,LipL45由定植于肾小管的柯氏乳杆菌表达。这些观察结果表明LipL45的表达对环境提示有反应,包括在哺乳动物宿主感染过程中遇到的提示。

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