Kiyotani Kazuma, Park Jae-Hyun, Inoue Hiroyuki, Husain Aliya, Olugbile Sope, Zewde Makda, Nakamura Yusuke, Vigneswaran Wickii T
Department of Medicine, The University of Chicago , Chicago, IL, USA.
Department of Pathology, The University of Chicago , Chicago, IL, USA.
Oncoimmunology. 2017 Jan 6;6(2):e1278330. doi: 10.1080/2162402X.2016.1278330. eCollection 2017.
To investigate the link between the genomic landscape of cancer cells and immune microenvironment in tumor tissues, we characterized somatic mutations and tumor-infiltrating lymphocytes (TILs) in malignant pleural mesothelioma (MPM), including mutation/neoantigen load, spatial heterogeneity of somatic mutations of cancer cells and TILs (T-cell receptor β (TCRβ) repertoire), and expression profiles of immune-related genes using specimens of three different tumor sites (anterior, posterior, and diaphragm) obtained from six MPM patients. Integrated analysis identified the distinct patterns of somatic mutations and the immune microenvironment signatures both intratumorally and interindividually. MPM cases showed intratumoral heterogeneity in somatic mutations with unique TCRβ clonotypes of TILs that were restricted to each tumor site, suggesting the presence of a neoantigen-related immune response. Correlation analyses showed that higher neoantigen load was significantly correlated with stronger clonal expansion of TILs ( = 0.048) and a higher expression level of an immune-associated cytolytic factor ( ( = 0.0041) in tumor tissues), suggesting that high neoantigen loads in tumor cells might promote expansion of functional tumor-specific T cells in the tumor bed. Our results collectively indicate that MPM tumors constitute a diverse heterogeneity in both the genomic landscape and immune microenvironment, and that mutation/neoantigen load may affect the immune microenvironment in MPM tissues.
为了研究肿瘤组织中癌细胞的基因组图谱与免疫微环境之间的联系,我们对恶性胸膜间皮瘤(MPM)中的体细胞突变和肿瘤浸润淋巴细胞(TILs)进行了特征分析,包括突变/新抗原负荷、癌细胞和TILs体细胞突变的空间异质性(T细胞受体β(TCRβ)谱系),并使用从6例MPM患者获得的三个不同肿瘤部位(前部、后部和膈肌)的标本分析免疫相关基因的表达谱。综合分析确定了肿瘤内和个体间体细胞突变的不同模式以及免疫微环境特征。MPM病例在体细胞突变中表现出肿瘤内异质性,TILs具有独特的TCRβ克隆型,且局限于每个肿瘤部位,提示存在新抗原相关的免疫反应。相关性分析表明,较高的新抗原负荷与TILs更强的克隆扩增显著相关( = 0.048),并且与肿瘤组织中免疫相关溶细胞因子的较高表达水平显著相关( = 0.0041),这表明肿瘤细胞中的高新抗原负荷可能促进肿瘤床中功能性肿瘤特异性T细胞的扩增。我们的结果共同表明,MPM肿瘤在基因组图谱和免疫微环境方面均构成了多样的异质性,并且突变/新抗原负荷可能影响MPM组织中的免疫微环境。