Xu Qilong, McShan Kristy, Liang Fang Ting
Department of Pathobiological Sciences, Louisiana State University, Baton Rouge, LA 70803, USA.
Mol Microbiol. 2007 Apr;64(1):220-31. doi: 10.1111/j.1365-2958.2007.05636.x.
Timely expression of the outer surface protein C (OspC) is crucial for the pathogenic strategy of the Lyme disease spirochete Borrelia burgdorferi. The pathogen abundantly expresses OspC during initial infection when the antigen is required, but downregulates when its presence poses a threat to the spirochetes once the anti-OspC humoral response has developed. Here, we show that a large palindromic sequence immediately upstream of the ospC promoter is essential for the repression of ospC expression during murine infection and for the ability of B. burgdorferi to evade specific OspC humoral immunity. Deletion of the sequence completely diminished the ability of B. burgdorferi to avoid clearance by transferred OspC antibody in SCID mice. B. burgdorferi lacking the regulatory element was able to initiate infection but unable to persist in immunocompetent mice. Taken together, the regulatory element immediately upstream of the ospC promoter serves as an operator that may interact with an unidentified repressor(s) to negatively regulate ospC expression and is essential for the immune evasion of B. burgdorferi.
外表面蛋白C(OspC)的及时表达对于莱姆病螺旋体伯氏疏螺旋体的致病策略至关重要。该病原体在初次感染需要该抗原时大量表达OspC,但一旦抗OspC体液免疫反应形成,当OspC的存在对螺旋体构成威胁时,其表达就会下调。在此,我们表明,ospC启动子上游紧邻的一个大回文序列对于小鼠感染期间ospC表达的抑制以及伯氏疏螺旋体逃避特异性OspC体液免疫的能力至关重要。该序列的缺失完全削弱了伯氏疏螺旋体在SCID小鼠中避免被转移的OspC抗体清除的能力。缺乏该调控元件的伯氏疏螺旋体能够引发感染,但无法在免疫健全的小鼠中持续存在。综上所述,ospC启动子上游紧邻的调控元件作为一个操纵基因,可能与一种未鉴定的阻遏物相互作用以负向调节ospC表达,并且对于伯氏疏螺旋体的免疫逃避至关重要。