肿瘤居民、T 细胞受体 CDR3 和肾酶-1 的化学互补性与黑色素瘤存活率的提高有关。

Q2 Medicine Oncotarget Pub Date : 2024-08-05 DOI:10.18632/oncotarget.28633
Saif Zaman, Fred S Gorelick, Andrea Chrobrutskiy, Boris I Chobrutskiy, Gary V Desir, George Blanck
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引用次数: 0

摘要

分泌蛋白肾酶-1的过表达会对黑色素瘤和胰腺癌患者的生存产生负面影响,而抑制肾酶-1的信号传导则会通过促进T细胞活化来推动肿瘤排斥反应。因此,我们研究了黑色素瘤驻留的T细胞受体(TCR)互补决定区3(CDR3)氨基酸序列(AAs)与肾酶-1蛋白之间的化学互补性。通过化学互补性评分算法评估,TCR CDR3与肾酶-1 AAs互补性的增加与黑色素瘤患者总生存期(OS)的改善有关。多个免疫特征基因的表达水平与TCR CDR3-肾酶-1互补性评分的增加呈显著正相关。此外,在肾酶-1基因表达水平较低的病例中,观察到的TCR CDR3与肾酶-1 AAs的高互补性与生存的关系更为密切。TCR CDR3与肾素酶-1相互作用位点的硅学图谱确定了主要的候选表位,包括肾素酶-1蛋白的信号模块RP220,这与RP220单克隆抗体是黑色素瘤生长的强效抑制剂这一事实是一致的。这些研究结果表明,肾酶-1是黑色素瘤TCR识别的潜在抗原,可被视为免疫疗法的靶点。
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Chemical complementarity of tumor resident, T-cell receptor CDR3s and renalase-1 correlates with increased melanoma survival.

Overexpression of the secretory protein renalase-1 negatively impacts the survival of melanoma and pancreatic cancer patients, while inhibition of renalase-1 signaling drives tumor rejection by promoting T-cell activation. Thus, we investigated the chemical complementarity between melanoma-resident, T-cell receptor (TCR) complementarity-determining region 3 (CDR3) amino acid sequences (AAs) and the renalase-1 protein. Increasing complementarity of TCR CDR3s to renalase-1 AAs, as assessed by a chemical complementarity scoring algorithm, was associated with improved overall survival (OS) in melanoma patients. The expression levels of several immune signature genes were significantly, positively correlated with increasing TCR CDR3-renalase-1 complementarity scores. Additionally, the survival association observed with high complementarity of TCR CDR3s to renalase-1 AAs was more robust in cases with low renalase-1 gene expression levels. Mapping of TCR CDR3-renalase-1 in silico interaction sites identified major epitope candidates including RP220, the signaling module of the renalase-1 protein, consistent with the fact that a monoclonal antibody to RP220 is a potent inhibitor of melanoma growth. These findings indicate that renalase-1 is a potential antigen for TCR recognition in melanoma and could be considered as a target for immunotherapy.

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来源期刊
Oncotarget
Oncotarget Oncogenes-CELL BIOLOGY
CiteScore
6.60
自引率
0.00%
发文量
129
审稿时长
1.5 months
期刊介绍: Information not localized
期刊最新文献
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