人β -防御素2对补体系统的调节。

Journal of burns and wounds Pub Date : 2007-01-10
Satyanarayan Bhat, Yau-Hau Song, Carl Lawyer, Stephen M Milner
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引用次数: 0

摘要

目的:人β -防御素(HBD)和补体系统是两种重要的先天免疫机制,可有效对抗多种烧伤和创面病原体。然而,在热损伤后,过度或不受控制的补体激活会导致组织损伤。我们实验室之前的研究表明,HBD-2在烧伤创面中的表达降低,而在烧伤水疱液中则不存在。先前的研究表明,人中性粒细胞肽可以与补体系统的C1q组分结合,阻止补体活化。本研究的目的是确定HBD-1和HBD-2是否也可以结合C1q成分并调节补体活性。方法:采用斑点杂交法测定HBD-1和HBD-2与C1q组分的结合效率。通过CH50和AP50测定HBD-2通过经典途径和替代途径对补体系统激活的影响。此外,在DNAStar计算机模拟研究中,通过与已知的C1q抑制剂肽2J进行比较,预测了HBD-1和HBD-2抑制C1q活性的能力。结果:C1q与HBD-2结合较强,而C1q与HBD-1结合较弱。HBD-2显著抑制经典途径而不影响替代途径。此外,一项计算机模拟研究还揭示了HBD-2与已知的HBD-2的C1q抑制序列的结构同源性。结论:HBD-2抑制经典途径。缺失的防御素是补体系统的一种天然抑制剂,它的替代可能具有双重保护作用,不仅是一种抗菌剂,而且可以防止补体系统的不受控制的激活。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Modulation of the complement system by human beta-defensin 2.

Modulation of the complement system by human beta-defensin 2.

Modulation of the complement system by human beta-defensin 2.

Modulation of the complement system by human beta-defensin 2.

Objective: Human beta-defensin (HBD) and the complement system are two important innate immune mechanisms active against a broad range of burn and wound pathogens. However, excessive or uncontrolled complement activation, following thermal injury, contributes to tissue damage. Previous studies from our laboratory suggested a decreased expression of HBD-2 in burn wounds and its absence in burn blister fluid. Prior studies have demonstrated that human neutrophil peptide can bind to the C1q component of the complement system and prevent complement activation. The objective of this study was to determine whether HBD-1 and HBD-2 can also bind to the C1q component and modulate complement activity.

Methods: The binding efficiency of HBD-1 and HBD-2 to the C1q component was determined by utilizing dot blot hybridization. The effect of HBD-2 on the activation of the complement system by the classical and alternative pathways was determined by CH50 and AP50 assays. In addition, the ability of HBD-1 and HBD-2 to inhibit C1q activity was predicted by a comparison with known C1q inhibitor peptide 2J in a DNAStar computer modeling study.

Results: C1q binding to HBD-2 was strong, whereas C1q binding to HBD-1 was weak. HBD-2 inhibits the classical pathway significantly without affecting the alternative pathway. In addition, a computer modeling study also revealed structural homology of HBD-2 with known C1q inhibitory sequences of HBD-2.

Conclusion: HBD-2 inhibits the classical pathway. The replacement of missing defensin, a natural inhibitor of the complement system, may have a dual protective role not only as an antimicrobial agent but also in providing protection against uncontrolled activation of the complement system.

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