Ho C L, Lin Y L, Chen W C, Yu H M, Wang K T, Hwang L L, Chen C T
Institute of Biological Chemistry, Academia Sinica, Taipei, Taiwan, R.O.C.
Toxicon. 1995 Nov;33(11):1443-51. doi: 10.1016/0041-0101(95)00093-2.
Mastoparan B (MP-B) is a cationic tetradecapeptide (LKLKSIVSWAKKVL-CONH2, mol. wt 1611) isolated from the black-bellied hornet (Vespa basalis) venom. The small peptide itself was capable of inducing antibodies without prior conjugation to a protein carrier in rabbits and mice. The mouse antibody was found to be of IgG1 isotype with kappa-type light chain. The peptide antigen was able to form insoluble complexes with the specific antibody, suggesting that MP-B possessed more than one epitope in its molecule. The finding that MP-B was able to bind with both mouse and rabbit antibodies in sandwich ELISA supports this contention. Synthetic MP-B analogues in which lysine at position 2, 4, 11 or 12 was replaced by neutral amino acids such as asparagine or leucine showed a significant decrease in their antibody-binding activities. Substitution of lysine at position 4 (Lys4) caused the most marked inhibition in its binding activity. However, replacing tryptophan at position 9 by tyrosine caused a relatively small reduction in its binding activity. Replacing both Lys2,4 by asparagine or removing Lys-containing segments at amino or carboxyl terminus in MP-B sequence caused a remarkable decrease in the antibody-binding and immunogenic activities of the peptide. The Lys residues located at amino and carboxyl terminal segments of MP-B, especially Lys4, appear to play a critical role in the binding interaction and the immunogenicity of the peptide.
蜂毒肽B(MP - B)是一种阳离子十四肽(LKLKSIVSWAKKVL - CONH2,分子量1611),从黑腹胡蜂(Vespa basalis)毒液中分离得到。这种小肽本身能够在未预先与蛋白质载体偶联的情况下,在兔和小鼠体内诱导产生抗体。发现小鼠抗体为IgG1同种型,轻链为κ型。肽抗原能够与特异性抗体形成不溶性复合物,这表明MP - B分子中具有不止一个表位。MP - B能够在夹心ELISA中与小鼠和兔抗体结合这一发现支持了这一观点。在2、4、11或12位赖氨酸被天冬酰胺或亮氨酸等中性氨基酸取代的合成MP - B类似物,其抗体结合活性显著降低。4位赖氨酸(Lys4)的取代对其结合活性产生的抑制最为明显。然而,9位色氨酸被酪氨酸取代,其结合活性仅出现相对较小的降低。MP - B序列中2、4位赖氨酸均被天冬酰胺取代,或在氨基或羧基末端去除含赖氨酸的片段,均会导致该肽的抗体结合活性和免疫原性显著降低。位于MP - B氨基和羧基末端片段的赖氨酸残基,尤其是Lys4,似乎在该肽的结合相互作用和免疫原性中起关键作用。