Chilson O P, Boylston A W, Crumpton M J
EMBO J. 1984 Dec 20;3(13):3239-45. doi: 10.1002/j.1460-2075.1984.tb02285.x.
The interaction of phytohaemagglutinin (PHA) with the human T lymphocyte antigen receptor (Ti) was explored. Nonidet-P40 lysates of surface-labelled HPB-ALL cells were immunoprecipitated with PHA, using a rabbit anti-(PHA)-serum, as well as clonotypic monoclonal antibodies (H1-2D4 and T40/25) and a rabbit antiserum (R-43) against Ti. One- and two-dimensional SDS-polyacrylamide electrophoresis under reducing and non-reducing conditions showed that both the clonotypic antibodies and PHA precipitated a disulphide cross-linked heterodimer having a mol. wt. of approximately 79 000 (unreduced) and a comprising subunits of mol. wts. approximately 50 000 and 39 000 (reduced). Further evidence that PHA binds Ti was obtained by (i) cross-immunodepletion with H1-2D4 and PHA; (ii) immunoprecipitation with H1-2D4 of a glycoprotein fraction specifically eluted from a PHA immunoprecipitate; (iii) immunoprecipitation with PHA of a solubilised H1-2D4 immunoprecipitate; (iv) 2-D (non-equilibrium pH gradient electrophoresis/SDS) analyses of H1-2D4 and PHA immunoprecipitates, indicated that H1-2D4 and PHA recognise coincident beta polypeptides. PHA also binds a Ti-like disulphide cross-linked heterodimer on tonsil lymphocytes and two other T-cell leukaemias (HUT-78 and J6). The data further suggest that PHA and R-43 recognise a subpopulation of Ti molecules on HPB-ALL cells that are not bound by H1-2D4, suggesting that there may be at least two forms of Ti. Similar experiments indicate that Concanavalin A (Con A) and wheat germ agglutinin (WGA) also probably bind Ti, whereas Helix pomatia agglutinin (HPA) does not.
研究了植物血凝素(PHA)与人T淋巴细胞抗原受体(Ti)的相互作用。用兔抗(PHA)血清、克隆型单克隆抗体(H1-2D4和T40/25)以及抗Ti兔抗血清(R-43)对表面标记的HPB-ALL细胞的Nonidet-P40裂解物进行PHA免疫沉淀。在还原和非还原条件下的一维及二维SDS-聚丙烯酰胺凝胶电泳显示,克隆型抗体和PHA均沉淀出一种二硫键交联的异二聚体,其分子量约为79000(非还原状态),由分子量约为50000和39000的亚基组成(还原状态)。通过以下方式获得了PHA与Ti结合的进一步证据:(i)用H1-2D4和PHA进行交叉免疫去除;(ii)用H1-2D4对从PHA免疫沉淀物中特异性洗脱的糖蛋白部分进行免疫沉淀;(iii)用PHA对溶解的H1-2D4免疫沉淀物进行免疫沉淀;(iv)对H1-2D4和PHA免疫沉淀物进行二维(非平衡pH梯度电泳/SDS)分析,表明H1-2D4和PHA识别一致的β多肽。PHA还能结合扁桃体淋巴细胞以及另外两种T细胞白血病(HUT-78和J6)上的一种类似Ti的二硫键交联异二聚体。数据进一步表明,PHA和R-43识别HPB-ALL细胞上未被H1-2D4结合的Ti分子亚群,这表明可能至少存在两种形式的Ti。类似实验表明,刀豆球蛋白A(Con A)和麦胚凝集素(WGA)可能也与Ti结合,而蜗牛凝集素(HPA)则不结合。