Bozzacco Leonia, Trumpfheller Christine, Siegal Frederick P, Mehandru Saurabh, Markowitz Martin, Carrington Mary, Nussenzweig Michel C, Piperno Angela Granelli, Steinman Ralph M
Laboratories of Cellular Physiology and Immunology, Chris Browne Center for Immunology and Immune Diseases, The Rockefeller University, New York, NY 10021, USA.
Proc Natl Acad Sci U S A. 2007 Jan 23;104(4):1289-94. doi: 10.1073/pnas.0610383104. Epub 2007 Jan 17.
Optimal HIV vaccines should elicit CD8+ T cells specific for HIV proteins presented on MHC class I products, because these T cells contribute to host resistance to viruses. We had previously found that the targeting of antigen to dendritic cells (DCs) in mice efficiently induces CD8+ T cell responses. To extend this finding to humans, we introduced the HIV p24 gag protein into a mAb that targets DEC-205/CD205, an endocytic receptor of DCs. We then assessed cross-presentation, which is the processing of nonreplicating internalized antigen onto MHC class I for recognition by CD8+ T cells. Low doses of alphaDEC-gag, but not control Ig-gag, stimulated proliferation and IFN-gamma production by CD8+ T cells isolated from the blood of HIV-infected donors. alphaCD205 fusion mAb was more effective for cross-presentation than alphaCD209/DC-SIGN, another abundant DC uptake receptor. Presentation was diverse, because we identified eight different gag peptides that were recognized via DEC-205 in 11 individuals studied consecutively. Our results, based on humans with highly polymorphic MHC products, reveal that DCs and DEC-205 can cross-present several different peptides from a single protein. Because of the consistency in eliciting CD8+ T cell responses, these data support the testing of alphaDEC-205 fusion mAb as a protein-based vaccine.
最佳的HIV疫苗应能激发针对MHC I类产物所呈递的HIV蛋白的CD8+ T细胞,因为这些T细胞有助于宿主抵抗病毒。我们之前发现,在小鼠中将抗原靶向树突状细胞(DC)可有效诱导CD8+ T细胞反应。为了将这一发现扩展至人类,我们将HIV p24 gag蛋白引入一种靶向DEC-205/CD205(DC的一种内吞受体)的单克隆抗体中。然后,我们评估了交叉呈递,即把非复制性内化抗原加工成MHC I类分子以供CD8+ T细胞识别的过程。低剂量的αDEC-gag而非对照Ig-gag刺激了从HIV感染供体血液中分离出的CD8+ T细胞的增殖和IFN-γ产生。αCD205融合单克隆抗体在交叉呈递方面比另一种丰富的DC摄取受体αCD209/DC-SIGN更有效。呈递具有多样性,因为在连续研究的11名个体中,我们鉴定出了8种不同的通过DEC-205识别的gag肽段。我们基于具有高度多态性MHC产物的人类所获得的结果表明,DC和DEC-205可以从单一蛋白交叉呈递几种不同的肽段。由于在激发CD8+ T细胞反应方面具有一致性,这些数据支持对αDEC-205融合单克隆抗体作为一种基于蛋白的疫苗进行测试。