Miller Daniel P, Oliver Lee D, Tegels Brittney K, Reed Lucas A, O'Bier Nathaniel S, Kurniyati Kurni, Faust Lindsay A, Lawson Christine K, Allard Anna M, Caimano Melissa J, Marconi Richard T
Department of Microbiology and Immunology, Virginia Commonwealth University Medical Center, Richmond, Virginia, USA.
Department of Oral Biology, State University of New York at Buffalo, Buffalo, New York, USA.
Infect Immun. 2016 Jun 23;84(7):2051-2058. doi: 10.1128/IAI.01542-15. Print 2016 Jul.
The Treponema denticola FhbB protein contributes to immune evasion by binding factor H (FH). Cleavage of FH by the T. denticola protease, dentilisin, may contribute to the local immune dysregulation that is characteristic of periodontal disease (PD). Although three FhbB phyletic types have been defined (FhbB1, FhbB2, and FhbB3), the in vivo expression patterns and antigenic heterogeneity of FhbB have not been assessed. Here, we demonstrate that FhbB is a dominant early antigen that elicits FhbB type-specific antibody (Ab) responses. Using the murine skin abscess model, we demonstrate that the presence or absence of FhbB or dentilisin significantly influences Ab responses to infection and skin abscess formation. Competitive binding analyses revealed that α-FhbB Ab can compete with FH for binding to T. denticola and block dentilisin-mediated FH cleavage. Lastly, we demonstrate that dentilisin cleavage sites reside within critical functional domains of FH, including the complement regulatory domain formed by CCPs 1 to 4. Analysis of the FH cleavage products revealed that they lack cofactor activity. The data presented here provide insight into the in vivo significance of dentilisin, FhbB and its antigenic diversity, and the potential impact of FH cleavage on the regulation of complement activation.
齿垢密螺旋体FhbB蛋白通过结合补体因子H(FH)来促进免疫逃逸。齿垢密螺旋体蛋白酶(牙本质素)对FH的切割可能导致局部免疫失调,这是牙周病(PD)的特征。虽然已定义了三种FhbB系统发育类型(FhbB1、FhbB2和FhbB3),但尚未评估FhbB在体内的表达模式和抗原异质性。在此,我们证明FhbB是一种主要的早期抗原,可引发FhbB类型特异性抗体(Ab)反应。使用小鼠皮肤脓肿模型,我们证明FhbB或牙本质素的存在与否会显著影响对感染的Ab反应和皮肤脓肿形成。竞争性结合分析表明,α-FhbB抗体可与FH竞争结合齿垢密螺旋体,并阻断牙本质素介导的FH切割。最后,我们证明牙本质素切割位点位于FH的关键功能域内,包括由CCP1至4形成的补体调节域。对FH切割产物的分析表明,它们缺乏辅因子活性。本文提供的数据有助于深入了解牙本质素、FhbB及其抗原多样性的体内意义,以及FH切割对补体激活调节的潜在影响。