内源性逆转录酶的转录结构可划分食管腺癌亚型。

NAR Cancer Pub Date : 2023-07-26 eCollection Date: 2023-09-01 DOI:10.1093/narcan/zcad040
Anastasiya Kazachenka, Jane Hc Loong, Jan Attig, George R Young, Piyali Ganguli, Ginny Devonshire, Nicola Grehan, Francesca D Ciccarelli, Rebecca C Fitzgerald, George Kassiotis
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引用次数: 0

摘要

大多数癌症类型都表现出异常的转录活性,包括逆转录转座元件(RTE)的抑制。然而,不同癌症类型和亚型的 RTE 转录激活的程度、特异性和潜在后果可能大不相同。我们从 OCCAMS(食管癌临床和分子分层)联盟和 TCGA(癌症基因组图谱)中的食管腺癌(EAC)及其前体巴雷特食管(BE)中分析了 RTE 的转录活性。我们发现 EAC 转录组中的 RTE 含量极高,主要是由包含内含子或相邻 RTE 的基因转录驱动的,而不是由自主 RTE 转录驱动的。尽管如此,EAC中仍有大量跨越RTE和基因的嵌合转录本以及来自独立RTE的转录本,特别是KLF5和SOX9控制的HERVH前病毒。值得注意的是,不完全的 mRNA 剪接和 EAC 特征性的内含 RTE 包涵物反映了各自完全剪接的功能性 mRNA 异构体的相对缺失,这与细胞适应性受损是一致的。RNA剪接缺陷与染色体 Xp22.32 上 HERVH 病毒的强转录激活有关,并定义了具有不同分子特征和预后的 EAC 亚型。我们的研究确定了 EAC 可区分的 RTE 转录特征,反映了不同的潜在过程和预后,从而为有针对性的研究提供了一个框架。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

The transcriptional landscape of endogenous retroelements delineates esophageal adenocarcinoma subtypes.

The transcriptional landscape of endogenous retroelements delineates esophageal adenocarcinoma subtypes.

The transcriptional landscape of endogenous retroelements delineates esophageal adenocarcinoma subtypes.

The transcriptional landscape of endogenous retroelements delineates esophageal adenocarcinoma subtypes.

Most cancer types exhibit aberrant transcriptional activity, including derepression of retrotransposable elements (RTEs). However, the degree, specificity and potential consequences of RTE transcriptional activation may differ substantially among cancer types and subtypes. Representing one extreme of the spectrum, we characterize the transcriptional activity of RTEs in cohorts of esophageal adenocarcinoma (EAC) and its precursor Barrett's esophagus (BE) from the OCCAMS (Oesophageal Cancer Clinical and Molecular Stratification) consortium, and from TCGA (The Cancer Genome Atlas). We found exceptionally high RTE inclusion in the EAC transcriptome, driven primarily by transcription of genes incorporating intronic or adjacent RTEs, rather than by autonomous RTE transcription. Nevertheless, numerous chimeric transcripts straddling RTEs and genes, and transcripts from stand-alone RTEs, particularly KLF5- and SOX9-controlled HERVH proviruses, were overexpressed specifically in EAC. Notably, incomplete mRNA splicing and EAC-characteristic intronic RTE inclusion was mirrored by relative loss of the respective fully-spliced, functional mRNA isoforms, consistent with compromised cellular fitness. Defective RNA splicing was linked with strong transcriptional activation of a HERVH provirus on Chr Xp22.32 and defined EAC subtypes with distinct molecular features and prognosis. Our study defines distinguishable RTE transcriptional profiles of EAC, reflecting distinct underlying processes and prognosis, thus providing a framework for targeted studies.

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