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α-、β-和θ-防御素与甲型流感病毒及表面活性蛋白D的相互作用。

Interactions of alpha-, beta-, and theta-defensins with influenza A virus and surfactant protein D.

作者信息

Doss Mona, White Mitchell R, Tecle Tesfaldet, Gantz Donald, Crouch Erika C, Jung Grace, Ruchala Piotr, Waring Alan J, Lehrer Robert I, Hartshorn Kevan L

机构信息

Department of Medicine, Boston University School of Medicine, Boston, MA 02118, USA.

出版信息

J Immunol. 2009 Jun 15;182(12):7878-87. doi: 10.4049/jimmunol.0804049.

Abstract

We have reported that the alpha-defensins human neutrophil peptides (HNP)-1 and HNP-2 neutralize and aggregate influenza A virus (IAV) and promote uptake of IAV by neutrophils. These alpha-defensins were also shown to bind to surfactant protein (SP)-D and reduce its antiviral activity. In this study, we examined retrocyclin (RC)1 and RC2, humanized versions of the antiviral theta-defensins found in the leukocytes of certain nonhuman primates. RC1 was just as effective as HNP-1-3 in neutralizing IAV, and RC2 and RC101 (an analog of RC1) were more effective. In contrast, human beta-defensins (HBDs) showed less neutralizing activity. Human defensins 5 and 6 (mainly produced by intestinal Paneth cells) had viral neutralizing activity similar to HNP-1-3. Like HNP-1-3, RCs induced viral aggregation and promoted the uptake of IAV by neutrophils. We used surface plasmon resonance to evaluate binding of defensins to SP-D. HBDs, HD6, and HNP-4 bound minimally to SP-D. HNP-1-3 and RCs bound SP-D with high affinity; however, unlike HNP-1 and HNP-2, RCs did not inhibit SP-D antiviral activity. HBDs also did not inhibit antiviral activity of SP-D. Given their strong neutralizing activity and compatibility with SP-D, RCs may provide attractive prototypes for designing therapeutics that can prevent or treat respiratory infections caused by IAV.

摘要

我们曾报道,α-防御素人类嗜中性粒细胞肽(HNP)-1和HNP-2可中和并聚集甲型流感病毒(IAV),并促进嗜中性粒细胞对IAV的摄取。这些α-防御素还被证明可与表面活性蛋白(SP)-D结合并降低其抗病毒活性。在本研究中,我们检测了逆转环素(RC)1和RC2,它们是在某些非人类灵长类动物白细胞中发现的抗病毒θ-防御素的人源化形式。RC1在中和IAV方面与HNP-1 - 3同样有效,而RC2和RC101(RC1的类似物)则更有效。相比之下,人类β-防御素(HBD)的中和活性较低。人类防御素5和6(主要由肠道潘氏细胞产生)具有与HNP-1 - 3相似的病毒中和活性。与HNP-1 - 3一样,RC可诱导病毒聚集并促进嗜中性粒细胞对IAV的摄取。我们使用表面等离子体共振来评估防御素与SP-D的结合。HBD、HD6和HNP-4与SP-D的结合极少。HNP-1 - 3和RC与SP-D具有高亲和力结合;然而,与HNP-1和HNP-2不同,RC不会抑制SP-D的抗病毒活性。HBD也不会抑制SP-D的抗病毒活性。鉴于其强大的中和活性以及与SP-D的兼容性,RC可能为设计可预防或治疗由IAV引起的呼吸道感染的治疗药物提供有吸引力的原型。

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