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ATP6S1 elicits potent humoral responses associated with immune-mediated tumor destruction

机译:ATP6S1引发与免疫介导的肿瘤破坏相关的强体液反应

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An important goal of cancer immunology is the identification of antigens associated with tumor destruction. Vaccination with irradiated tumor cells engineered to secrete granulocyte/macrophage colony-stimulating factor (GM-CSF) generates potent, specific, and long-lasting antitumor immunity in multiple murine tumor models. A phase I clinical trial of this vaccination strategy in patients with advanced melanoma demonstrated the consistent induction of dense CD4~+ and CD8~+ T lymphocyte and plasma cell infiltrates in distant metastases, resulting in extensive tumor destruction, fibrosis, and edema. Antimelanoma antibody and cytotoxic T cell responses were associated with tumor cell death. To characterize the targets of these responses, we screened an autologous cDNA expression library prepared from a densely infiltrated metastasis with postvaccination sera from a long-term responding patient. High-titer IgG antibodies detected ATP6S1, a putative accessory unit of the vacuolar H~+-ATPase complex. A longitudinal analysis of this patient revealed an association between the vaccine-induced increase in antibodies to ATP6S1 and tumor destruction. Three additional vaccinated melanoma patients and three metastatic non-small cell lung carcinoma patients vaccinated with autologous GM-CSF-secreting tumor cells similarly showed a correlation between humoral responses to ATP6S1 and tumor destruction. Moreover, a chronic myelogenous leukemia patient who experienced a complete remission after CD4~+ donor lymphocyte infusions also developed high-titer antibodies to ATP6S1. Lastly, vaccination with GM-CSF-secreting B16 melanoma cells stimulated high-titer antibodies to ATPS1 in a murine model. Taken together, these findings demonstrate that potent humoral responses to ATP6S1 are associated with immune-mediated destruction of diverse tumors.
机译:癌症免疫学的一个重要目标是鉴定与肿瘤破坏相关的抗原。经过工程改造以分泌粒细胞/巨噬细胞集落刺激因子(GM-CSF)的辐射肿瘤细胞进行疫苗接种,可在多种鼠类肿瘤模型中产生有效,特异性和持久的抗肿瘤免疫力。这项针对晚期黑素瘤患者的疫苗接种策略的I期临床试验表明,在远处转移灶中,一致诱导出致密的CD4〜+和CD8〜+ T淋巴细胞以及浆细胞浸润,从而导致广泛的肿瘤破坏,纤维化和水肿。 Antimelanoma抗体和细胞毒性T细胞反应与肿瘤细胞死亡相关。为了表征这些反应的靶标,我们筛选了一个自体cDNA表达文库,该文库是由长期应答患者的疫苗接种后血清的密集浸润转移制备的。高滴度IgG抗体可检测到ATP6S1,ATP6S1是液泡H〜+ -ATPase复合物的假定辅助单位。对该患者的纵向分析显示,疫苗诱导的ATP6S1抗体增加与肿瘤破坏之间存在关联。另外三名接种了自体分泌GM-CSF的肿瘤细胞接种过的黑色素瘤患者和三名转移性非小细胞肺癌患者同样显示出对ATP6S1的体液反应与肿瘤破坏之间的相关性。此外,CD4 +供体淋巴细胞输注后完全缓解的慢性粒细胞白血病患者也产生了针对ATP6S1的高滴度抗体。最后,在小鼠模型中,接种分泌GM-CSF的B16黑色素瘤细胞的疫苗刺激了针对ATPS1的高滴度抗体。综上所述,这些发现表明对ATP6S1的强力体液反应与多种肿瘤的免疫介导破坏有关。

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