van der Bruggen Pierre, Van den Eynde Benoît J
Ludwig Institute for Cancer Research and Cellular Genetics Unit, Institute of Cellular Pathology, Université catholique de Louvain, 74 avenue Hippocrate, UCL 7459, B-1200 Brussels, Belgium.
Curr Opin Immunol. 2006 Feb;18(1):98-104. doi: 10.1016/j.coi.2005.11.013. Epub 2005 Dec 15.
Various new aspects of antigen processing have been uncovered through the study of tumor antigens. One of these is the production of antigenic peptides by splicing of two distinct peptide fragments. In one of the two cases reported, the proteasome was found to be responsible for splicing. The presentation of another peptide on major histocompatibility complex class I molecules was found to depend on secretion and reuptake of the parent protein, implying a cross-presentation pathway in melanoma cells. Class II presentation of peptides derived from cytosolic proteins now appears to result from autophagy. Based on increased knowledge on antigen processing and presentation, new vaccination strategies are aimed at improving the targeting of antigens to dendritic cells, promoting cross-priming (for example, using chloroquine), improving peptide binding to class I molecules and targeting antigens to both the class I and the class II pathways.
通过对肿瘤抗原的研究,发现了抗原加工的各种新情况。其中之一是通过拼接两个不同的肽片段产生抗原肽。在报道的两个案例之一中,发现蛋白酶体负责拼接。另一种肽在主要组织相容性复合体I类分子上的呈递被发现依赖于亲本蛋白的分泌和再摄取,这意味着黑色素瘤细胞中存在交叉呈递途径。现在看来,源自胞质蛋白的肽的II类呈递是自噬的结果。基于对抗原加工和呈递的更多了解,新的疫苗接种策略旨在改善抗原对树突状细胞的靶向,促进交叉启动(例如,使用氯喹),改善肽与I类分子的结合,并将抗原靶向I类和II类途径。