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齿垢密螺旋体的主要表面蛋白复合物使HeLa细胞膜去极化并诱导离子通道形成。

The major surface protein complex of Treponema denticola depolarizes and induces ion channels in HeLa cell membranes.

作者信息

Mathers D A, Leung W K, Fenno J C, Hong Y, McBride B C

机构信息

Department of Physiology, University of British Columbia, Vancouver, Canada.

出版信息

Infect Immun. 1996 Aug;64(8):2904-10. doi: 10.1128/iai.64.8.2904-2910.1996.

Abstract

The oral spirochete Treponema denticola is closely associated with periodontal diseases in humans. The 53-kDa major surface protein (Msp) located in the outer membrane of T. denticola serovar a (ATCC 35405) has both pore-forming activity and adhesin activity. We have used standard patch clamp recording methods to study the effects of a partially purified outer membrane complex containing Msp on HeLa cells. The Msp complex was free of the chymotrypsin-like proteinase also found in the outer membrane of T. denticola. Msp bound to several HeLa cell proteins, including a 65-kDa surface protein and a 96-kDa cytoplasmic protein. The Msp complex depolarized and increased the conductance of the HeLa cell membrane in a manner which was not strongly selective for Na+, K+, Ca2+, and Cl- ions. Cell-attached patches of HeLa cell membrane exposed to Msp complex exhibited short-lived channels with a slope conductance of 0.4 nS in physiologically normal saline. These studies show that Msp binds both a putative epithelial cell surface receptor and cytoplasmic proteins and that the Msp complex can form large conductance ion channels in the cytoplasmic membrane of epithelial cells. These properties may contribute to the cytopathic effects of T. denticola on host epithelial cells.

摘要

口腔螺旋体齿垢密螺旋体与人类牙周疾病密切相关。位于齿垢密螺旋体血清型a(ATCC 35405)外膜的53-kDa主要表面蛋白(Msp)具有成孔活性和黏附活性。我们使用标准膜片钳记录方法研究了含有Msp的部分纯化外膜复合物对HeLa细胞的影响。Msp复合物不含在齿垢密螺旋体外膜中也发现的类胰凝乳蛋白酶样蛋白酶。Msp与几种HeLa细胞蛋白结合,包括一种65-kDa表面蛋白和一种96-kDa细胞质蛋白。Msp复合物使HeLa细胞膜去极化并增加其电导,这种方式对Na+、K+、Ca2+和Cl-离子的选择性不强。暴露于Msp复合物的HeLa细胞膜的细胞贴附片在生理正常盐溶液中表现出斜率电导为0.4 nS的短暂通道。这些研究表明,Msp既结合假定的上皮细胞表面受体又结合细胞质蛋白,并且Msp复合物可在上皮细胞质膜中形成大电导离子通道。这些特性可能有助于齿垢密螺旋体对宿主上皮细胞的细胞病变效应。

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