Beaumelle B, Bensammar L, Bienvenüe A
URA 530 Centre National de la Recherche Scientifique, Département Biologie Santé, Université Montpellier, France.
J Biol Chem. 1992 Jun 5;267(16):11525-31.
Translocation is a necessary and rate-limiting step for diphtheria toxin (DT) cytotoxicity. We have reconstituted DT translocation in a cell-free system using endosomes purified from lymphocytes and have demonstrated this using two different probe/cell systems, which provided identical results: 125I-DT/human CEM cells and 125I-transferrin-DT/mouse BW cells. The cell-free DT translocation process was found to be dependent on the presence of the pH gradient endosome (pH 5.3)/cytosol (pH 7). Among the pH equilibrating agents, nigericin (5 microM) was found to be the most effective, inhibiting DT translocation by 88%. An optimum pH value of 7 on the cytosolic side of the membrane (pH gradient approximately 1.7) was determined. ATP per se is not required for DT translocation. 125I-DT translocation was 3-fold more active from late than from early endosomes, probably because of their slightly more acidic pH. Only the A chain of the toxin was found to escape from either 125I-DT/CEM or 125I-transferrin-DT/BW endosomes. Translocation of control endosome labels (125I-transferrin and 125I-horseradish peroxidase) was never observed. We also show that DT receptors present on resistant (mouse) cells block the translocation of the toxin and are responsible for the resistance of these cells to DT.
易位是白喉毒素(DT)细胞毒性的一个必要且限速步骤。我们利用从淋巴细胞中纯化的内体在无细胞系统中重建了DT的易位,并使用两种不同的探针/细胞系统对此进行了验证,结果相同:125I-DT/人CEM细胞和125I-转铁蛋白-DT/小鼠BW细胞。发现无细胞DT易位过程依赖于pH梯度内体(pH 5.3)/胞质溶胶(pH 7)的存在。在pH平衡剂中,尼日利亚菌素(5 microM)被发现是最有效的,可抑制DT易位88%。确定了膜胞质侧的最佳pH值为7(pH梯度约为1.7)。DT易位本身不需要ATP。125I-DT从晚期内体的易位活性比早期内体高3倍,可能是因为它们的pH值略低。仅发现毒素的A链从125I-DT/CEM或125I-转铁蛋白-DT/BW内体中逸出。从未观察到对照内体标记物(125I-转铁蛋白和125I-辣根过氧化物酶)的易位。我们还表明,抗性(小鼠)细胞上存在的DT受体可阻断毒素的易位,并导致这些细胞对DT具有抗性。