Falnes P O, Madshus I H, Sandvig K, Olsnes S
Institute for Cancer Research, Norwegian Radium Hospital, Oslo, Norway.
J Biol Chem. 1992 Jun 15;267(17):12284-90.
Diphtheria toxin B fragment is capable of forming cation-selective channels in the plasma membrane. Such channels may be involved in the translocation of the toxin A fragment to the cytosol. Seven negatively charged amino acids in the B fragment were replaced one by one by lysines, followed by studies of cytotoxicity and channel-forming ability of the different mutants. The mutant D392K showed a strong reduction in binding to cell surface receptors. Of the six mutants that showed wild-type binding affinity, the two mutants D295K and D318K were very inefficient in forming channels. These two mutants had the lowest ability to mediate A fragment translocation. The mutant E362K was able both to induce cation channel formation and to mediate A fragment translocation at a higher pH value than the wild-type B fragment. The results support the notion that formation of cation channels is of importance for the translocation of the A fragment across the plasma membrane, and they indicate that the pH requirement for translocation of the A fragment to the cytosol is partly determined by the B fragment.
白喉毒素B片段能够在质膜中形成阳离子选择性通道。此类通道可能参与毒素A片段向胞质溶胶的转运。B片段中的七个带负电荷的氨基酸被赖氨酸逐个取代,随后对不同突变体的细胞毒性和通道形成能力进行了研究。突变体D392K与细胞表面受体的结合力大幅降低。在六个具有野生型结合亲和力的突变体中,两个突变体D295K和D318K形成通道的效率非常低。这两个突变体介导A片段转运的能力最低。突变体E362K在比野生型B片段更高的pH值下既能诱导阳离子通道形成,又能介导A片段转运。这些结果支持了阳离子通道的形成对于A片段跨质膜转运很重要这一观点,并且表明A片段向胞质溶胶转运所需的pH值部分由B片段决定。