首页> 美国卫生研究院文献>Infection and Immunity >Borrelia burgdorferi Escape Mutants That Survive in the Presence of Antiserum to the OspA Vaccine Are Killed When Complement Is Also Present
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Borrelia burgdorferi Escape Mutants That Survive in the Presence of Antiserum to the OspA Vaccine Are Killed When Complement Is Also Present

机译:当还存在补体时在OspA疫苗抗血清存在下存活的疏螺旋体疏螺旋体被杀死。

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摘要

As an initial attempt to investigate the possible role of outer surface protein A (OspA) escape mutants of Borrelia burgdorferi in decreasing the efficacy of the OspA vaccine, mutants of the HB19 strain of B. burgdorferi sensu stricto were selected in vitro from an uncloned, low-passage-number isolate. The antiserum used for selection was obtained from rhesus monkeys that had been given a vaccine of the same formulation and dose, and by the same route of administration, as that given to humans in several trials. All of the mutants selected in liquid medium and subsequently cloned twice in solid medium expressed a single abundant protein of 28 to 34 kDa instead of both OspA and OspB. Depending on the mutant, this protein reacted strongly, weakly, or not detectably with the anti-OspA antibody used for selection. Analysis of the ospAB locus of each of four representatives from these three groups of mutants by PCR with oligonucleotide primers that hybridize to flanking regions of the ospAB operon, and of the corresponding phenotype with monoclonal antibodies that bind to the amino or carboxyl terminus of the OspA or OspB polypeptide, indicated that in all cases a deletion within the operon had occurred. Spirochetes from the four mutant strains chosen for further analysis could be killed in antibody-dependent, complement-mediated killing assays with the selecting anti-OspA antibody, despite their resistance to killing with this antibody in the absence of complement. Complement-mediated killing occurred at an antibody concentration higher than that required to kill wild-type spirochetes. If anti-OspA antibody acts only within the tick, where complement is probably ineffective due to tick-derived decomplementing factors, then OspA escape mutants, if infectious, could seriously diminish the efficacy of OspA vaccines. On the other hand, if the killing of B. burgdorferi with anti-OspA antibody also takes place within the human host, then our results indicate that chimeric/deletion escape mutants will be killed as well.
机译:为了研究伯氏疏螺旋体的外表面蛋白A(OspA)逃逸突变体在降低OspA疫苗效力中的可能作用,从未克隆的体外选择了B. burgdorferi sensu stricto HB19菌株的突变体,低通道数分离物。用于选择的抗血清是从恒河猴获得的,该恒河猴已获得了与某些试验中给予人类相同配方和剂量,相同给药途径的疫苗。在液体培养基中选择并随后在固体培养基中克隆两次的所有突变体都表达了一个28-34 kDa的丰富蛋白质,而不是OspA和OspB。取决于突变体,该蛋白质与用于选择的抗OspA抗体发生强烈,微弱或不可检测的反应。通过使用与ospAB操纵子侧翼区域杂交的寡核苷酸引物进行PCR分析来自这三组突变体的四个代表的ospAB基因座,并使用与OspA的氨基或羧基末端结合的单克隆抗体分析相应的表型或OspB多肽,表示在所有情况下操纵子内都发生了缺失。尽管在不存在补体的情况下它们对用该抗体杀死具有抗性,但是可以使用选择的抗OspA抗体在抗体依赖性补体介导的杀伤试验中杀死选择用于进一步分析的四种突变株的螺旋体。补体介导的杀伤发生在抗体浓度高于杀死野生型螺旋体所需的抗体浓度下。如果抗OspA抗体仅在壁虱内起作用,而由于壁虱衍生的去补充因子,补体可能无效,那么OspA逃逸突变体(如果具有感染性)可能会严重降低OspA疫苗的功效。另一方面,如果在人宿主中也发生了用抗OspA抗体杀死B. burgdorferi的现象,那么我们的结果表明,嵌合/缺失逃逸突变体也将被杀死。

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