Brown W C, Lonsdale-Eccles J D, DeMartini J C, Grab D J
International Laboratory for Research on Animal Diseases (ILRAD), Nairobi, Kenya, Africa.
J Immunol. 1990 Jan 1;144(1):271-7.
Theileria parva-specific bovine BoT4+ Th cell clones were used to characterize Ag associated with T. parva schizont-infected lymphoblastoid cells. All of the clones tested responded to cells infected with the immunizing (Muguga) as well as heterologous stocks of T. parva, indicating that the T cells are specific for an Ag shared by several geographically diverse parasites. The response was apparently MHC-restricted, and induced by Ag expressed on the infected cell surface. In the presence of autologous APC, the clones were also stimulated by a soluble high speed supernatant (HSS), but not by a schizont membrane-enriched, subcellular fraction prepared from homogenates of infected cells. The clones produced IFN-gamma and T cell growth factor in response to HSS. The soluble Ag was absent in cells from which schizonts had been eliminated by treatment with the anti-theilerial drug, parvaquone. Fractionation of HSS by hydroxylapatite chromatography revealed two antigenic peaks that separated from the majority of the protein. Fractionation of HSS by gel filtration with the use of HPLC revealed several peaks of activity ranging in Mr from 270 kDa to less than 5 kDa. Further fractionation of HSS by both hydroxylapatite chromatography and gel filtration yielded three major peaks of activity (Mr 43, 12, 4.2 kDa). We conclude that a T cell-dependent schizont-associated soluble Ag is also expressed on the surface of T. parva-infected cells.
用泰勒虫特异性牛BoT4 + Th细胞克隆来鉴定与泰勒虫裂殖体感染的淋巴母细胞相关的抗原。所有测试的克隆都对用免疫原(穆古加株)感染的细胞以及泰勒虫的异源株有反应,这表明这些T细胞对几种地理上不同的寄生虫共有的一种抗原具有特异性。这种反应显然受MHC限制,且由感染细胞表面表达的抗原诱导。在存在自体抗原呈递细胞(APC)的情况下,这些克隆也受到可溶性高速上清液(HSS)的刺激,但不受从感染细胞匀浆制备的富含裂殖体膜的亚细胞组分的刺激。这些克隆在对HSS的反应中产生γ干扰素和T细胞生长因子。在用抗泰勒虫药物帕伐醌处理后已消除裂殖体的细胞中不存在可溶性抗原。通过羟基磷灰石层析对HSS进行分级分离显示出两个与大多数蛋白质分离的抗原峰。使用高效液相色谱(HPLC)通过凝胶过滤对HSS进行分级分离显示出几个活性峰,其分子量范围从270 kDa到小于5 kDa。通过羟基磷灰石层析和凝胶过滤对HSS进行进一步分级分离产生了三个主要活性峰(分子量分别为43、12、4.2 kDa)。我们得出结论,一种T细胞依赖性裂殖体相关可溶性抗原也在泰勒虫感染细胞的表面表达。