Hartshorn Kevan L, Ligtenberg Antoon, White Mitchell R, Van Eijk Martin, Hartshorn Max, Pemberton Lily, Holmskov Uffe, Crouch Erika
Department of Medicine, Section of Hematology/Oncology, Boston University School of Medicine, Boston, MA 02118, USA.
Biochem J. 2006 Jan 15;393(Pt 2):545-53. doi: 10.1042/BJ20050695.
We previously found that scavenger receptor cysteine-rich gp-340 (glycoprotein-340), isolated from lung or saliva, directly inhibits human IAVs (influenza A viruses). We now show that salivary gp-340 has broad antiviral activity against human, equine and porcine IAV strains. Although lung and salivary gp-340 are identical in protein sequence, salivary gp-340 from one donor had significantly greater antiviral activity against avian-like IAV strains which preferentially bind sialic acids in alpha(2,3) linkage. A greater density of alpha(2,3)-linked sialic acids was present on the salivary gp-340 from this donor as compared with salivary gp-340 from another donor or several preparations of lung gp-340. Hence, the specificity of sialic acid linkages on gp-340 is an important determinant of anti-IAV activity. Gp-340 binds to SP-D (surfactant protein D), and we previously showed that lung gp-340 has co-operative interactions with SP-D in viral neutralization and aggregation assays. We now report that salivary gp-340 can, in some cases, strongly antagonize certain antiviral activities of SP-D. This effect was associated with greater binding of salivary gp-340 to the carbohydrate recognition domain of SP-D as compared with the binding of lung gp-340. These findings may relate to inter-individual variations in innate defence against highly pathogenic IAV and to effects of aspiration of oral contents on SP-D-mediated lung functions.
我们之前发现,从肺或唾液中分离出的富含半胱氨酸的清道夫受体gp-340(糖蛋白-340)可直接抑制人甲型流感病毒(IAV)。我们现在表明,唾液中的gp-340对人、马和猪的IAV毒株具有广泛的抗病毒活性。尽管肺和唾液中的gp-340在蛋白质序列上相同,但来自一名供体的唾液gp-340对优先结合α(2,3)连接的唾液酸的禽源样IAV毒株具有显著更强的抗病毒活性。与来自另一名供体的唾液gp-340或几种肺gp-340制剂相比,该供体的唾液gp-340上存在更高密度的α(2,3)连接唾液酸。因此,gp-340上唾液酸连接的特异性是抗IAV活性的重要决定因素。Gp-340与表面活性蛋白D(SP-D)结合,我们之前表明,在病毒中和和聚集试验中,肺gp-340与SP-D存在协同相互作用。我们现在报告,在某些情况下,唾液gp-340可强烈拮抗SP-D的某些抗病毒活性。与肺gp-340的结合相比,这种效应与唾液gp-340与SP-D的碳水化合物识别结构域的更强结合有关。这些发现可能与针对高致病性IAV的先天防御中的个体差异以及口腔内容物吸入对SP-D介导的肺功能的影响有关。