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仅具有某些P.II外膜蛋白的淋球菌与人类中性粒细胞相互作用。

Gonococci possessing only certain P.II outer membrane proteins interact with human neutrophils.

作者信息

Fischer S H, Rest R F

机构信息

Department of Pathology, Hospital of the University of Pennsylvania, Philadelphia 19104.

出版信息

Infect Immun. 1988 Jun;56(6):1574-9. doi: 10.1128/iai.56.6.1574-1579.1988.

Abstract

We investigated the role of the protein II (P.II) family of gonococcal outer membrane proteins in the interaction of seven single P.II variants of Neisseria gonorrhoeae FA1090 with human neutrophils in vitro. The abilities of nonpiliated gonococci to adhere to and be killed by neutrophils and to stimulate luminol-dependent chemiluminescence (CL) depended on the possession of at least one P.II. Gonococci lacking P.II (i.e., P.II-) adhered poorly to and were not killed by neutrophils and induced only minimal CL. Although most P.II-containing (i.e., P.II+) variants adhered to, stimulated, and were readily killed by neutrophils, one variant, containing P.IIa, possessed none of these characteristics; it acted just like a P.II- variant. No correlation was found between the colony opacity phenotype and the interaction of gonococci with neutrophils. Data from CL experiments suggest that the stimulatory effect of P.II was dominant over that of pili; i.e., piliated P.II+ gonococci were much more stimulatory than piliated P.II- gonococci. The results indicate that most but not all P.II proteins mediate, in part or in full, the interaction of N. gonorrhoeae with human neutrophils, including adherence, stimulation of the neutrophil respiratory burst, and phagocytic killing.

摘要

我们研究了淋病奈瑟菌外膜蛋白的蛋白II(P.II)家族在淋病奈瑟菌FA1090的7种单一P.II变体与人类中性粒细胞体外相互作用中的作用。无菌毛淋病奈瑟菌黏附于中性粒细胞、被中性粒细胞杀死以及刺激鲁米诺依赖性化学发光(CL)的能力取决于是否至少拥有一种P.II。缺乏P.II的淋病奈瑟菌(即P.II-)对中性粒细胞的黏附性很差,不会被中性粒细胞杀死,并且仅诱导极少量的CL。尽管大多数含有P.II的(即P.II+)变体能够黏附于中性粒细胞、刺激中性粒细胞并容易被中性粒细胞杀死,但有一种含有P.IIa的变体不具备这些特征;其表现与P.II-变体无异。未发现菌落不透明表型与淋病奈瑟菌和中性粒细胞相互作用之间存在相关性。CL实验数据表明,P.II的刺激作用强于菌毛;即,有菌毛的P.II+淋病奈瑟菌比有菌毛的P.II-淋病奈瑟菌更具刺激性。结果表明,大多数但并非所有的P.II蛋白部分或全部介导淋病奈瑟菌与人类中性粒细胞的相互作用(包括黏附、刺激中性粒细胞呼吸爆发以及吞噬杀伤)。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a712/259438/24411f13335b/iai00078-0177-a.jpg

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