摘要:HLA配体分析鉴定前列腺癌干细胞抗原用于t细胞免疫治疗

A. Codd, S. Al-Taei, S. Tokita, E. Mizushima, P. Rizkallah, Thomas Whalley, Barbara Szomolay, K. Ladell, J. McLaren, Sian Llewellyn-Lacey, D. Price, T. Kanaseki, T. Torigoe, S. Man, Z. Tabi
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Results: The ligandome analysis identified over 1900 peptides. We selected antigens with low gene expression in healthy tissues (www.GTexportal.org) and high predicted binding to DU145 HLA alleles (http://tools.immuneepitope.org/mhci/). ALDH high DU145 cells were more tumorigenic in vivo than ALDH low cells. ALDH high DU145 and primary prostate cancer cells grew larger colonies and spheres in vitro. We identified 11 CSC antigens by qPCR; 6 upregulated in ALDH high DU145 cells (e.g., TACSTD2) and 5 abundant in both ALDH high and ALDH low DU145 cells (e.g., XPO1). Relevant 9-mer epitopes from three antigens* induced CD8+ T-cell responses in vitro. Antigen-specific CD8+ T-cells were identified by tetramer staining at a frequency of approx. 15 per 100000 cells. These cells are currently being expanded to use in CTL assays. Conclusion: We have identified CSC antigens which could lead to specific targeting by T-cells and prevention of PCa relapse. 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引用次数: 0

摘要

局限性前列腺癌(PCa)可以通过雄激素剥夺、放疗和手术成功治疗,但这些可能不足以根除癌症干细胞(CSCs)。干细胞比大部分肿瘤更能抵抗这种治疗;并可能导致疾病复发。复发的PCa患者预后较差。我们假设CSCs可以被t细胞以抗原特异性的方式杀死,从而防止复发的可能性。在这项研究中,我们通过HLA配体分析和分离抗原特异性CD8+ t细胞鉴定了新的PCa CSC抗原。方法:我们用醛脱氢酶(ALDH)活性作为CSC的标志物来鉴定CSC。对DU145 PCa细胞系和前列腺腺癌原代组织中ALDH高、低表达细胞进行体外鉴定;此外,还对DU145 CSCs和非CSCs进行了体内鉴定。我们用免疫沉淀法从DU145细胞中分离出多肽- hla复合物,并用质谱法对洗脱的多肽进行分析。我们根据ALDH高、低DU145细胞中的基因表达(qPCR检测)鉴定出CSC抗原。为了选择抗原进行进一步分析,我们使用COOT软件和YASARA服务器对hla -肽界面进行同源性建模,以实现能量最小化。使用PISA软件对界面交互进行量化。我们还通过荧光显微镜和PCR证实了抗原在原代细胞中的表达。产生四聚体来分离识别这些抗原的t细胞。结果:配体分析鉴定出超过1900个多肽。我们选择了在健康组织中低基因表达的抗原(www.GTexportal.org)和与DU145 HLA等位基因高预测结合的抗原(http://tools.immuneepitope.org/mhci/)。高ALDH DU145细胞在体内的致瘤性高于低ALDH DU145细胞。高ALDH DU145和原发性前列腺癌细胞在体外培养出更大的菌落和球。通过qPCR鉴定出11种CSC抗原;6在ALDH高DU145细胞中表达上调(如TACSTD2), 5在ALDH高和ALDH低DU145细胞中表达丰富(如XPO1)。来自三种抗原*的相关9-mer表位诱导CD8+ t细胞的体外反应。抗原特异性CD8+ t细胞通过四聚体染色鉴定,频率约为。每100000个细胞中有15个。这些细胞目前正在扩大用于CTL测定。结论:我们已经鉴定出可引起t细胞特异性靶向的CSC抗原,并可预防PCa复发。进一步限制于更频繁的HLA等位基因的表位可以根据我们鉴定的新抗原在计算机上预测。我们也在研究预测与自身肽高度一致的病毒表位(在计算机上确定),以增强对csc的免疫反应。正在进行的专利申请的主题。引文格式:Amy S. Codd, sally Al-Taei, Serina Tokita, Emi Mizushima, Pierre J. Rizkallah, Tom Whalley, Barbara Szomolay, Kristin Ladell, James E. McLaren, Sian Llewellyn-Lacey, David A. Price, Takayuki Kanaseki, Toshihiko Torigoe, Stephen Man, Zsuzsanna Tabi。HLA配体分析鉴定t细胞免疫治疗前列腺癌干细胞抗原[摘要]。第四届CRI-CIMT-EATI-AACR国际癌症免疫治疗会议:将科学转化为生存;2018年9月30日至10月3日;纽约,纽约。费城(PA): AACR;癌症免疫学杂志2019;7(2增刊):摘要nr B007。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Abstract B007: Identification of prostate cancer stem cell antigens for T-cell immunotherapy by HLA ligandome analysis
Introduction: Localized prostate cancer (PCa) can be successfully treated by androgen deprivation, radiotherapy and surgery, however these may not be sufficient to eradicate cancer stem cells (CSCs). CSCs are more resistant to such treatments than the bulk of the tumor; and can contribute to disease relapse. PCa patients who relapse have a poor prognosis. We hypothesize that CSCs could be killed by T-cells in an antigen specific way, thus preventing the possibility of relapse. In this study we identified novel PCa CSC antigens by HLA ligandome analysis and isolated antigen specific CD8+ T-cells. Methods: We identified CSCs using aldehyde dehydrogenase (ALDH) activity as a CSC marker. ALDH high and low cells from the DU145 PCa cell line and from prostate adenocarcinoma primary tissue were characterized in vitro; DU145 CSCs and non-CSCs were additionally characterized in vivo. We isolated peptide-HLA complexes from DU145 cells by immunoprecipitation and analyzed the eluted peptides by mass spectrometry. We identified CSC antigens based on the gene expression in ALDH high and low DU145 cells (measured by qPCR). To select antigens for further analysis we performed homology modelling of the HLA-peptide interface using COOT software and the YASARA server for energy minimization. The interface interactions were quantified using PISA software. We additionally confirmed antigen expression in the primary cells by fluorescence microscopy and PCR. Tetramers were produced to isolate T-cells which recognized a selection of these antigens. Results: The ligandome analysis identified over 1900 peptides. We selected antigens with low gene expression in healthy tissues (www.GTexportal.org) and high predicted binding to DU145 HLA alleles (http://tools.immuneepitope.org/mhci/). ALDH high DU145 cells were more tumorigenic in vivo than ALDH low cells. ALDH high DU145 and primary prostate cancer cells grew larger colonies and spheres in vitro. We identified 11 CSC antigens by qPCR; 6 upregulated in ALDH high DU145 cells (e.g., TACSTD2) and 5 abundant in both ALDH high and ALDH low DU145 cells (e.g., XPO1). Relevant 9-mer epitopes from three antigens* induced CD8+ T-cell responses in vitro. Antigen-specific CD8+ T-cells were identified by tetramer staining at a frequency of approx. 15 per 100000 cells. These cells are currently being expanded to use in CTL assays. Conclusion: We have identified CSC antigens which could lead to specific targeting by T-cells and prevention of PCa relapse. Further epitopes restricted to the more frequent HLA alleles could additionally be predicted in silico from the novel antigens we identified. We are also investigating prediction of viral epitopes highly aligned with the self-peptides (determined in silico) to boost the immune response against CSCs. *Subject of an ongoing patent application. Citation Format: Amy S. Codd, Saly Al-Taei, Serina Tokita, Emi Mizushima, Pierre J. Rizkallah, Tom Whalley, Barbara Szomolay, Kristin Ladell, James E. McLaren, Sian Llewellyn-Lacey, David A. Price, Takayuki Kanaseki, Toshihiko Torigoe, Stephen Man, Zsuzsanna Tabi. Identification of prostate cancer stem cell antigens for T-cell immunotherapy by HLA ligandome analysis [abstract]. In: Proceedings of the Fourth CRI-CIMT-EATI-AACR International Cancer Immunotherapy Conference: Translating Science into Survival; Sept 30-Oct 3, 2018; New York, NY. Philadelphia (PA): AACR; Cancer Immunol Res 2019;7(2 Suppl):Abstract nr B007.
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