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An integrative analysis reveals functional targets of GATA6 transcriptional regulation in gastric cancer

机译:综合分析揭示了胃癌中GATA6转录调控的功能靶点

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摘要

Lineage-restricted transcription factors (TFs) are frequently mutated or overexpressed in cancer and contribute toward malignant behaviors, but the molecular bases of their oncogenic properties are largely unknown. Because TF activities are difficult to inhibit directly with small molecules, the genes and pathways they regulate might represent more tractable targets for drug therapy. We studied GATA6, a TF gene that is frequently amplified or overexpressed in gastric, esophageal, and pancreatic adenocarcinomas. GATA6-overexpressing gastric cancer cell lines cluster in gene expression space, separate from non-overexpressing lines. This expression clustering signifies a shared pathogenic group of genes that GATA6 may regulate through direct cis-element binding. We used chromatin immunoprecipation and sequencing (ChIP-seq) to identify GATA6-bound genes and considered TF occupancy in relation to genes that respond to GATA6 depletion in cell lines and track with GATA6 mRNA (synexpression groups) in primary gastric cancers. Among other cellular functions, GATA6-occupied genes control apoptosis and govern M-phase of the cell cycle. Depletion of GATA6 reduced levels of the latter transcripts and arrested cells in G2 and M phases of the cell cycle. Synexpression in human tumor samples identified likely direct transcriptional targets substantially better than consideration only of transcripts that respond to GATA6 loss in cultured cells. Candidate target genes responded to loss of GATA6 or its homolog GATA4 and even more to depletion of both proteins. Many GATA6-dependent genes lacked nearby binding sites but several strongly dependent, synexpressed, and GATA6-bound genes encode TFs such as MYC, HES1, RARB, and CDX2. Thus, many downstream effects occur indirectly through other TFs and GATA6 activity in gastric cancer is partially redundant with GATA4. This integrative analysis of locus occupancy, gene dependency, and synexpression provides a functional signature of GATA6-overexpressing gastric cancers, revealing both limits and new therapeutic directions for a challenging and frequently fatal disease.
机译:沿袭限制转录因子(TFs)在癌症中经常发生突变或过表达,并导致恶性行为,但其致癌特性的分子基础在很大程度上尚不清楚。由于TF活性难以直接用小分子抑制,因此它们调节的基因和途径可能代表药物治疗的更易控制的靶标。我们研究了GATA6,这是一种在胃,食道和胰腺腺癌中经常扩增或过表达的TF基因。 GATA6过表达的胃癌细胞系聚集在基因表达空间中,与非过表达的系分开。这种表达聚类表示GATA6可以通过直接顺式元素结合来调节的一个共同的致病基因组。我们使用染色质免疫沉淀和测序(ChIP-seq)来识别与GATA6结合的基因,并考虑了与在原发性胃癌中对细胞系中的GATA6消耗有反应并跟踪GATA6 mRNA(联合抑制组)的基因有关的TF占用情况。在其他细胞功能中,GATA6占用的基因控制细胞凋亡并控制细胞周期的M期。 GATA6的耗竭减少了后者转录本的水平,并使细胞周期处于G2和M期的细胞停滞。与仅考虑对培养细胞中GATA6丢失有反应的转录本相比,在人类肿瘤样品中的同型表达确定的直接转录靶标明显更好。候选靶基因对GATA6或其同系物GATA4的丢失做出反应,甚至对两种蛋白质的消耗都做出反应。许多GATA6依赖性基因缺乏附近的结合位点,但几个高度依赖性的,同表达的基因和GATA6结合的基因编码TF,例如MYC,HES1,RARB和CDX2。因此,许多下游效应是通过其他TFs间接发生的,胃癌中的GATA6活性部分与GATA4无关。这种对基因座占用,基因依赖性和共表达的综合分析提供了过表达GATA6的胃癌的功能特征,揭示了具有挑战性且经常致命的疾病的局限性和新的治疗方向。

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