首页> 美国卫生研究院文献>Infection and Immunity >Putative glycoprotein and glycolipid polymorphonuclear leukocyte receptors for the Actinomyces naeslundii WVU45 fimbrial lectin.
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Putative glycoprotein and glycolipid polymorphonuclear leukocyte receptors for the Actinomyces naeslundii WVU45 fimbrial lectin.

机译:内氏放线菌WVU45纤维凝集素的推定糖蛋白和糖脂多形核白细胞受体。

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摘要

Recognition of receptors on sialidase-treated polymorphonuclear leukocytes (PMNs) by the Gal/GalNAc lectin associated with the type 2 fimbriae of certain strains of actinomyces results in activation of the PMNs, phagocytosis, and destruction of the bacteria. In the present study, plant lectins were utilized as probes to identify putative PMN receptors for the actinomyces lectin. The Gal-reactive lectin from Ricinus communis (RCAI), the Gal/GalNAc-reactive lectins from R. communis (RCAII) and Bauhinia purpurea (BPA), as well as the Gal beta 1-3GalNAc-specific lectins from Arachis hypogaea (PNA) and Agaricus bisporus (ABA) inhibited killing of Actinomyces naeslundii WVU45 by sialidase-treated PMNs. These five lectins detected a 130-kDa surface-labeled glycoprotein on nitrocellulose transfers of PMN extracts separated by sodium dodecyl sulfate-polyacrylamide gel electrophoresis. This glycoprotein was revealed only after treatment of the transfers with sialidase, a condition analogous to the sialidase dependence of the lectin-mediated biological responses of the PMNs to the actinomyces. The mannose-reactive lectin concanavalin A did not inhibit killing of the actinomyces and failed to detect the 130-kDa glycoprotein but did block PMN-dependent killing of Escherichia coli B, a bacterium that possesses mannose-sensitive fimbriae. Therefore, the PMN glycoprotein receptor for A. naeslundii is clearly distinct from those recognized by E. coli. Two major putative glycolipid receptors were also identified by actinomyces and RCAI overlays on sialidase-treated thin-layer chromatograms of PMN gangliosides. Thus, both a 130-kDa glycoprotein and certain gangliosides are implicated in the attachment of the actinomyces to PMNs.
机译:Gal / GalNAc凝集素与某些放线菌菌株2型菌毛相关联对唾液酸酶处理的多形核白细胞(PMNs)受体的识别导致PMNs活化,吞噬作用和细菌破坏。在本研究中,植物凝集素被用作探针来鉴定放线菌凝集素的推定PMN受体。蓖麻(RCAI)的Gal反应性凝集素,普通R. Communis(RCAII)和紫荆(BPA)的Gal / GalNAc反应性凝集素,以及花生亚基(PARA)的Gal beta 1-3GalNAc特异性凝集素)和双孢蘑菇(ABA)抑制了唾液酸酶处理过的PMN对内生放线菌WVU45的杀伤作用。这五个凝集素在十二烷基硫酸钠-聚丙烯酰胺凝胶电泳分离的PMN提取物的硝酸纤维素转移上检测到一个130-kDa表面标记的糖蛋白。该糖蛋白仅在用唾液酸酶处理转移后才显示出来,唾液酸酶的情况类似于凝集素介导的PMN对放线菌的生物学反应的唾液酸酶依赖性。甘露糖反应性凝集素伴刀豆球蛋白A不能抑制放线菌的杀灭,也不能检测到130 kDa的糖蛋白,但是可以阻断PMN依赖性的对大肠杆菌B的杀灭,大肠杆菌B是一种具有甘露糖敏感性菌毛的细菌。因此,纳什曲霉的PMN糖蛋白受体明显不同于大肠杆菌所识别的那些。唾液酸酶处理的PMN神经节苷脂薄层色谱图中的放线菌和RCAI覆盖物也鉴定出两个主要的假定糖脂受体。因此,130-kDa糖蛋白和某些神经节苷脂都与放线菌与PMN的结合有关。

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