BCR-ABL fusion regions as a source of multiple leukemia-specific CD8+ T-cell epitopes

BCR-ABL fusion regions as a source of multiple leukemia-specific CD8+ T-cell epitopes
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DOI:
10.1038/sj.leu.2404354
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发表时间:
2006-10-01
期刊:
影响因子:
11.4
通讯作者:
Melief, C. J. M.
Melief, C. J. M.
中科院分区:
医学1区
文献类型:
--
作者:
Kessler, J. H.;Bres-Vloemans, S. A.;Melief, C. J. M.

文献摘要

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对于费城阳性白血病患者残留疾病的免疫治疗,BCR-ABL融合区是有吸引力的疾病特异性T细胞靶点。我们分析了这些地区的流行细胞毒性T淋巴细胞(CTL)表位的先进的反向免疫程序。17个新的BCR-ABL融合肽被鉴定为与人淋巴细胞抗原(HLA)-A68、HLA-B51、HLA-B61或HLA-Cw 4 HLA I类分子有效结合。综合酶消化分析表明,28个HLA I类结合融合肽中的10个在其C-末端后被蛋白酶体有效切除,这是有效细胞表面表达的必要条件。因此,这些肽是主要的疫苗候选物。其他肽要么完全缺乏C-末端释放,要么仅被蛋白酶体无效切除,使其不适合或不太适合包含在疫苗中。针对来自BCR-ABL e1 a2融合区的适当加工的HLA-B61表位AEALQRPVA产生的CTL,在急性淋巴细胞白血病(ALL)中表达,特异性识别ALL肿瘤细胞,证明了该表位的细胞表面呈递,其用于免疫治疗的适用性,并强调了我们的表位识别策略的准确性。我们的研究为选择最佳肽段用于抗白血病的免疫原性BCR-ABL疫苗提供了可靠的依据。
For immunotherapy of residual disease in patients with Philadelphia-positive leukemias, the BCR-ABL fusion regions are attractive disease-specific T-cell targets. We analyzed these regions for the prevalence of cytotoxic T lymphocyte ( CTL) epitopes by an advanced reverse immunology procedure. Seventeen novel BCR-ABL fusion peptides were identified to bind efficiently to the human lymphocyte antigen ( HLA)-A68, HLA-B51, HLA-B61 or HLA-Cw4 HLA class I molecules. Comprehensive enzymatic digestion analysis showed that 10 out of the 28 HLA class I binding fusion peptides were efficiently excised after their C-terminus by the proteasome, which is an essential requirement for efficient cell surface expression. Therefore, these peptides are prime vaccine candidates. The other peptides either completely lacked C-terminal liberation or were only inefficiently excised by the proteasome, rendering them inappropriate or less suitable for inclusion in a vaccine. CTL raised against the properly processed HLA-B61 epitope AEALQRPVA from the BCR-ABL e1a2 fusion region, expressed in acute lymphoblastic leukemia ( ALL), specifically recognized ALL tumor cells, proving cell surface presentation of this epitope, its applicability for immunotherapy and underlining the accuracy of our epitope identification strategy. Our study provides a reliable basis for the selection of optimal peptides to be included in immunotherapeutic BCR-ABL vaccines against leukemia.