PO.BCS01.01 · 生物信息与计算

RNA融合:一种尚未开发的新抗原来源,用于基于免疫的全亚型乳腺癌预防和治疗

RNA fusions: An untapped source of neoantigens for immune based breast cancer prevention and treatment across all subtypes of breast cancers

海报缩略图:RNA融合:一种尚未开发的新抗原来源,用于基于免疫的全亚型乳腺癌预防和治疗
编号 53 展板 15 时间 4/19 02:00–05:00 区域 Section 3 主讲 Anjana Bhardwaj, PhD
分会场 Application of Bioinformatics to Cancer Biology 1
查看 PDF 下载 PDF 🔒 查看 / 下载完整 PDF 需登录并开通下载套餐 · 查看套餐 / 开通 AACR 官方页面

作者与单位 Authors & Affiliations

Anjana Bhardwaj1, Chathurani Ranathunge2, Shiyanth Thevasagayampillai2, Aaranyah Kandasamy2, Brandon H. Than2, Constance T. Albarracin3, Isabelle Bedrosian1

1Department of Breast Surgical Oncology, UT MD Anderson Cancer Center, Houston, TX,2University of Houston, Houston, TX,3Department of Pathology, UT MD Anderson Cancer Center, Houston, TX

摘要 Abstract

中文摘要
背景:乳腺肿瘤被认为在免疫学上属于冷肿瘤,总体突变负荷为低至中等,导致可用于发现乳腺癌疫苗的新抗原库有限。RNA融合可产生比插入或缺失突变更具免疫原性的新抗原。在高风险乳腺组织和肿瘤中识别此类靶点为乳腺癌预防和治疗提供了新机遇。本研究的目的是表征散发性乳腺癌患者的癌前乳腺组织和乳腺肿瘤中嵌合RNA的流行情况。 方法学:通过对来自25例Her2阳性、25例激素受体阳性(HR)和25例三阴性(TN)患者的乳腺肿瘤及配对的邻近和远处组织共225份乳腺组织进行RNA测序来识别融合。RNA测序reads通过改良的ARRIBA融合发现流程进行融合calling处理。从接受乳房缩小手术的无癌女性获得的乳腺样本取自Komen Tissue Bank,用作对照以从分析中排除正常乳腺组织相关的嵌合RNA。 结果:所有主要乳腺肿瘤亚型(TNBC、Her2+和HR+)均表达RNA融合。TNBC和Her2+肿瘤表达的独特RNA融合数量显著多于HR+乳腺肿瘤。每个肿瘤样本均至少拥有2个新的RNA融合。与TNBC乳腺癌亚型的高基因组不稳定性相符,约1/3的TN乳腺肿瘤表达超过15个RNA融合。我们发现除编码基因外,非编码RNA也参与了RNA融合的生成。散发性乳腺肿瘤中识别出的RNA融合中约有1/5由至少一个癌基因伙伴驱动。有趣的是,我们发现相当数量的RNA融合具有多个断点,提示一个基因内存在多个易于断裂并与另一个基因伙伴融合的区域。与患者肿瘤异质性相符,乳腺肿瘤中的RNA融合绝大多数为私有性的。为识别与乳腺癌预防相关的RNA融合,我们研究了配对邻近样本中相较于指示肿瘤的RNA融合的存在情况。尽管我们发现癌前乳腺组织拥有丰富的RNA融合库,但其中大多数与配对乳腺肿瘤中识别出的融合不同。 结论:RNA融合在乳腺肿瘤以及高风险乳腺组织中频繁存在,可能为开发乳腺癌预防和治疗疫苗提供新机遇。
查看英文原文 English abstract
Background: Breast tumors are considered immunologically cold with an overall low to moderate mutation burden resulting in limited neoantigen repertoire that can be used for discovering a breast cancer vaccine. RNA fusions lead to the generation of neoantigens that are more immunogenic than insertion or deletion mutations. Identification of such targets in high risk mammary tissue and tumors represent novel opportunities for breast cancer prevention and treatment. The objective of this study was to characterize the prevalence of chimeric RNAs in precancerous breast tissue and breast tumors from sporadic breast cancer patients. Methodology: Fusions were identified by RNA sequencing 225 breast tissues from breast tumors and paired adjacent- and distant- tissues of 25 Her2 positive, 25 hormone receptor positive (HR) and 25 triple negative (TN) patients. The RNA sequencing reads were processed through modified ARRIBA fusion discovery pipeline for fusion calling. Breast samples obtained from cancer-free women undergoing breast reduction surgery were obtained from Komen Tissue Bank and used as controls to exclude normal mammary tissue associated chimeric RNAs from analysis. Results: All major subtypes of breast tumors (TNBC, Her2+ and HR+) express RNA fusions. TNBC and Her2+ tumors expressed substantially larger number of unique RNA fusions than HR+ breast tumors. Every tumor sample possessed at least 2 novel RNA fusions. In line with high genomic instability of TNBC subtype of breast cancer, about 1/3 of the TN breast tumors expressed greater than 15 RNA fusions. We found non-coding RNAs to be also implicated in the biogenesis of RNA fusions in addition to coding genes. Approximately 1/5 th of RNA fusions identified in sporadic breast tumors were driven from at least one oncogene partner. Interestingly, we found a substantial number of RNA fusions to possess multiple break points suggesting multiple areas within a gene that are prone to break and fuse with another gene partner. In line with patient tumor heterogeneity, RNA fusions in breast tumors were overwhelming private. In order to identify RNA fusions that are relevant for breast cancer prevention, we investigated the presence of RNA fusions in the paired adjacent samples as compared to the index tumor. Although, we found preneoplastic breast tissue to possess a rich repertoire of RNA fusions, majority of these were different from those identified in paired breast tumors. Conclusions: RNA fusions are frequently present in breast tumors as well as at risk breast tissue and may provide novel opportunities for developing vaccines for breast cancer prevention and treatment.
利益披露 Disclosure
A. Bhardwaj, None.. C. Ranathunge, None.. S. Thevasagayampillai, None.. A. Kandasamy, None.. B. H. Than, None.. C. T. Albarracin, None.. I. Bedrosian, None.

← 返回 AACR 2026 检索