Bolz Devin D, Sundsbak Rhianna S, Ma Ying, Akira Shizuo, Weis John H, Schwan Tom G, Weis Janis J
Department of Pathology, University of Utah, 15 North Medical Drive East #2100, Salt Lake City, UT 84112, USA.
Infect Immun. 2006 Dec;74(12):6750-60. doi: 10.1128/IAI.01160-06. Epub 2006 Oct 9.
Relapsing fever Borrelia spp. undergo antigenic variation, achieve high levels in blood, and require rapid production of immunoglobulin M (IgM) for clearance. MyD88-deficient mice display defective clearance of many pathogens; however, the IgM response to persistent infection is essentially normal. Therefore, MyD88(-/-) mice provided a unique opportunity to study the effect of nonantibody, innate host defenses to relapsing fever Borrelia. Infected MyD88(-/-) mice harbored extremely high levels of B. hermsii in the blood compared to wild-type littermates. In the comparison of MyD88(-/-) mice and B- and T-cell-deficient scid mice, two features stood out: (i) bacterial numbers in blood were at least 10-fold greater in MyD88(-/-) mice than scid mice, even though the production of IgM still occurred in MyD88(-/-) mice; and (ii) many of the MyD88(-/-) mice were able to exert partial clearance, although with delayed kinetics relative to wild-type mice, a feature not seen in scid mice. Further analysis revealed a delay in the IgM response to lipoproteins expressed by the original inoculum; however, by 6 days of infection antibodies were produced in MyD88(-/-) mice that could clear spirochetemia in scid mice. While these results indicated that the production of IgM was delayed in MyD88(-/-) mice, they also point to a second, antibody-independent role for MyD88 signaling in host defense to relapsing fever Borrelia. This second defect was apparent only when antibody levels were limiting.
回归热疏螺旋体可发生抗原变异,在血液中大量繁殖,并需要快速产生免疫球蛋白M(IgM)以实现清除。MyD88缺陷型小鼠对许多病原体的清除存在缺陷;然而,其对持续性感染的IgM反应基本正常。因此,MyD88(-/-)小鼠为研究非抗体性天然宿主防御对回归热疏螺旋体的作用提供了独特的机会。与野生型同窝小鼠相比,感染的MyD88(-/-)小鼠血液中赫氏疏螺旋体的水平极高。在比较MyD88(-/-)小鼠和B细胞及T细胞缺陷的scid小鼠时,有两个特征尤为突出:(i)尽管MyD88(-/-)小鼠仍能产生IgM,但其血液中的细菌数量比scid小鼠至少高10倍;(ii)许多MyD88(-/-)小鼠能够实现部分清除,尽管其动力学相对于野生型小鼠有所延迟,而这一特征在scid小鼠中未出现。进一步分析发现,MyD88(-/-)小鼠对原始接种物表达的脂蛋白的IgM反应延迟;然而,到感染第6天时,MyD88(-/-)小鼠产生的抗体能够清除scid小鼠的螺旋体血症。虽然这些结果表明MyD88(-/-)小鼠中IgM的产生延迟,但它们也指出了MyD88信号在宿主防御回归热疏螺旋体中的第二个非抗体依赖性作用。只有当抗体水平有限时,这第二个缺陷才会明显。