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埃立克体属牛病原体边缘无浆体主要表面蛋白1a和1b对牛红细胞和蜱细胞的差异黏附作用

Differential adhesion of major surface proteins 1a and 1b of the ehrlichial cattle pathogen Anaplasma marginale to bovine erythrocytes and tick cells.

作者信息

de la Fuente J, Garcia-Garcia J C, Blouin E F, Kocan K M

机构信息

Department of Veterinary Pathobiology, College of Veterinary Medicine, Oklahoma State University, Stillwater, OK 74078, USA.

出版信息

Int J Parasitol. 2001 Feb;31(2):145-53. doi: 10.1016/s0020-7519(00)00162-4.

Abstract

Anaplasma marginale is a tick-borne ehrlichial pathogen of cattle for which six major surface proteins (MSPs) have been described. The MSP1 complex, a heterodimer composed of MSP1a and MSP1b, was shown to induce a protective immune response in cattle and both proteins have been identified as putative adhesins for bovine erythrocytes. In this study the role of MSP1a and MSP1b as adhesins for bovine erythrocytes and tick cells was defined. msp1alpha and msp1beta1 genes from the Oklahoma isolate of A. marginale were cloned and expressed in Escherichia coli K-12 under the control of endogenous and tac promoters for both low and high level protein expression. Expression of the recombinant polypeptides was confirmed and localised on the surface of transformed E. coli. The adhesion properties of MSP1a and MSP1b were determined by allowing recombinant E. coli expressing these surface polypetides to react with bovine erythrocytes, Dermacentor variabilis gut cells and cultured tick cells derived from embryonic Ixodes scapularis. Adhesion of the recombinant E. coli to the three cell types was determined using recovery adhesion and microtiter haemagglutination assays, and by light and electron microscopy. MSP1a was shown by all methods tested to be an adhesin for bovine erythrocytes and both native and cultured tick cells. In contrast, recombinant E. coli expressing MSP1b adhered only to bovine erythrocytes and not to tick cells. When low expression vectors were used, single E. coli expressing MSP1a was seen adhered to individual tick cells while reaction of tick cells with the E. coli/MSP1a/high expression vector resulted in adhesion of multiple bacteria per cell. With electron microscopy, fusion of E. coli cell membranes expressing MSP1a or MSP1b with erythrocyte membranes was observed, as well as fusion of tick cell membranes with E. coli membranes expressing MSP1a. These studies demonstrated differential adhesion for MSP1a and MSP1b for which MSP1a is an A. marginale adhesin for both bovine erythrocytes and tick cells while MSP1b is an adhesin only for bovine erythrocytes. The role of the MSP1 complex, therefore, appears to vary among vertebrate and invertebrate hosts.

摘要

边缘无形体是一种通过蜱传播的牛埃立克体病原体,已描述了其六种主要表面蛋白(MSP)。MSP1复合体是由MSP1a和MSP1b组成的异二聚体,已证明其能在牛体内诱导保护性免疫反应,且这两种蛋白均被确定为牛红细胞的假定黏附素。在本研究中,确定了MSP1a和MSP1b作为牛红细胞和蜱细胞黏附素的作用。从边缘无形体俄克拉荷马分离株中克隆了msp1alpha和msp1beta1基因,并在大肠杆菌K-12中在内源启动子和tac启动子的控制下进行表达,以实现低水平和高水平的蛋白质表达。对重组多肽的表达进行了确认,并定位在转化大肠杆菌的表面。通过使表达这些表面多肽的重组大肠杆菌与牛红细胞、变异革蜱肠道细胞以及源自肩突硬蜱胚胎的培养蜱细胞反应,来确定MSP1a和MSP1b的黏附特性。使用回收黏附法和微量滴定血凝试验,以及光学显微镜和电子显微镜来确定重组大肠杆菌对这三种细胞类型的黏附情况。所有测试方法均表明MSP1a是牛红细胞以及天然和培养蜱细胞的黏附素。相比之下,表达MSP1b的重组大肠杆菌仅黏附于牛红细胞,而不黏附于蜱细胞。当使用低表达载体时,可见单个表达MSP1a的大肠杆菌黏附于单个蜱细胞,而蜱细胞与大肠杆菌/MSP1a/高表达载体反应则导致每个细胞有多个细菌黏附。通过电子显微镜观察到,表达MSP1a或MSP1b的大肠杆菌细胞膜与红细胞膜融合,以及蜱细胞膜与表达MSP1a的大肠杆菌膜融合。这些研究证明了MSP1a和MSP1b的黏附差异,其中MSP1a是边缘无形体对牛红细胞和蜱细胞的黏附素,而MSP1b仅是牛红细胞的黏附素。因此,MSP1复合体在脊椎动物和无脊椎动物宿主中的作用似乎有所不同。

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