Kuan C T, Pastan I
Laboratory of Molecular Biology, National Center Institute, National Institutes of Health, Bethesda, MD 20892, USA.
Proc Natl Acad Sci U S A. 1996 Feb 6;93(3):974-8. doi: 10.1073/pnas.93.3.974.
B1(dsFv)-PE33 is a recombinant immunotoxin composed of a mutant form of Pseudomonas exotoxin (PE) that does not need proteolytic activation and a disulfide-stabilized Fv fragment of the anti-Lewis(y) monoclonal antibody B1, which recognizes a carbohydrate epitope on human carcinoma cells. In this molecule, amino acids 1-279 of PE are deleted and domain Ib (amino acids 365-394) is replaced by the heavy chain variable region (VH) domain of monoclonal antibody B1. The light chain (VL) domain is connected to the VH domain by a disulfide bond. This recombinant toxin, termed B1(dsFv)-PE33, does not require proteolytic activation and it is smaller than other immunotoxins directed at Lewis(y), all of which require proteolytic activation. Furthermore, it is more cytotoxic to antigen-positive cell lines. B1(dsFv)-PE38 has the highest antitumor activity of anti-Lewis(y) immunotoxins previously constructed. B1(dsFv)-PE33 caused complete regression of tumors when given at 12 micrograms/kg (200 pmol/kg) every other day for three doses, whereas B1(dsFv)-PE38 did not cause regressions at 13 micrograms/kg (200 pmol/kg). By bypassing the need for proteolytic activation and decreasing molecular size we have enlarged the therapeutic window for the treatment of human cancers growing in mice, so that complete remissions are observed at 2.5% of the LD50.
B1(dsFv)-PE33是一种重组免疫毒素,由一种无需蛋白水解激活的铜绿假单胞菌外毒素(PE)突变形式和抗Lewis(y)单克隆抗体B1的二硫键稳定Fv片段组成,该抗体识别人类癌细胞上的碳水化合物表位。在这个分子中,PE的第1至279位氨基酸被删除,结构域Ib(第365至394位氨基酸)被单克隆抗体B1的重链可变区(VH)结构域取代。轻链(VL)结构域通过二硫键与VH结构域相连。这种重组毒素,称为B1(dsFv)-PE33,无需蛋白水解激活,且比其他针对Lewis(y)的免疫毒素更小,后者都需要蛋白水解激活。此外,它对抗原阳性细胞系的细胞毒性更强。B1(dsFv)-PE38具有先前构建的抗Lewis(y)免疫毒素中最高的抗肿瘤活性。当以12微克/千克(200皮摩尔/千克)的剂量每隔一天给药三次时,B1(dsFv)-PE33可使肿瘤完全消退,而B1(dsFv)-PE38在13微克/千克(200皮摩尔/千克)时并未引起肿瘤消退。通过无需蛋白水解激活并减小分子大小,我们扩大了在小鼠体内生长的人类癌症治疗的治疗窗口,从而在LD50的2.5%时观察到完全缓解。