Fossum B, Gedde-Dahl T, Breivik J, Eriksen J A, Spurkland A, Thorsby E, Gaudernack G
Institute of Transplantation Immunology, National Hospital, University of Oslo, Norway.
Int J Cancer. 1994 Jan 2;56(1):40-5. doi: 10.1002/ijc.2910560108.
Peptides derived from mutated ras are immunogenic in mice and humans, and represent a group of specific tumor antigens that are potential targets for immunotherapy. T-cell responses against mutant p21 ras can be initiated in vitro by repeated stimulation of peripheral-blood mononuclear cells with mutant ras-derived peptides. Patients with tumors commonly harbouring ras mutations may therefore show evidence of in vivo reactivity against such mutations. Peripheral-blood mononuclear cells from 10 patients with colorectal adenocarcinoma were screened for reactivity against synthetic ras-derived peptides corresponding to the most commonly found mutations in this type of cancer. In one patient, T-cell reactivity against the 1-25,13Gly-->Asp peptide was detected. From this patient, both CD4+ and CD8+ T-cell clones specific for the 1-25,13Gly-->Asp mutation could be raised. We were not, however, able to detect the corresponding mutation in the cancer. The 13Gly-->Asp mutation in the ras oncogene is frequent and constitutes 9 to 27% of all K ras mutations found in biopsies from patients with colorectal carcinomas. Our study demonstrates a mutant ras-specific T-cell response of both the CD4+ and the CD8+ phenotype in a cancer patient. We speculate that in this patient a specific T-cell response resulted in eradication of tumor cells harboring the 13Gly-->Asp mutation.
源自突变型ras的肽在小鼠和人类中具有免疫原性,代表了一组特定的肿瘤抗原,是免疫治疗的潜在靶点。通过用源自突变型ras的肽反复刺激外周血单个核细胞,可在体外引发针对突变型p21 ras的T细胞反应。因此,通常携带ras突变的肿瘤患者可能会表现出针对此类突变的体内反应证据。对10例大肠腺癌患者的外周血单个核细胞进行筛选,以检测其对对应于该类型癌症中最常见突变的合成ras衍生肽的反应性。在1例患者中,检测到针对1-25,13Gly→Asp肽的T细胞反应性。从该患者中,可以培养出对1-25,13Gly→Asp突变具有特异性的CD4+和CD8+ T细胞克隆。然而,我们未能在癌症中检测到相应的突变。ras癌基因中的13Gly→Asp突变很常见,在大肠癌患者活检中发现的所有K ras突变中占9%至27%。我们的研究证明了癌症患者中CD4+和CD8+表型的突变型ras特异性T细胞反应。我们推测,在该患者中,特异性T细胞反应导致携带13Gly→Asp突变的肿瘤细胞被清除。