Department of Biochemistry and Molecular Biology, Indiana University School of Medicine-South Bend, South Bend, IN, USA; Harper Cancer Research Institute, South Bend, IN, USA.
Department of Cell Biology, Neurobiology, and Anatomy, Medical College of Wisconsin, Milwaukee, WI 53226, USA; Blood Research Institute, Versiti, Milwaukee, WI 53226, USA; Department of Pediatrics, Medical College of Wisconsin, Milwaukee, WI 53226, USA.
Gene. 2020 May 15;738:144458. doi: 10.1016/j.gene.2020.144458. Epub 2020 Feb 13.
ARID3A and ARID3B are paralogs from the AT-Rich interactive Domain (ARID) family. ARID3A and ARID3B associate to regulate genes in B-cells and cancer. We were the first to demonstrate that ARID3B regulates stem cell genes and promotes the cancer stem cell phenotype. Importantly, different knockout phenotypes in mice and distinct patterns of expression in adult animals suggests that ARID3A and ARID3B may have unique functions. In addition, high levels of ARID3B but not ARID3A induce cell death. Our goal was to express ARID3A, ARID3B, or both genes at a moderate level (as can be observed in cancer) and then identify ARID3 regulated genes. We transduced ovarian cancer cells with ARID3A-GFP, ARID3B-RFP, or both. RNA-sequencing was conducted. ARID3A and ARID3B regulated nearly identical sets of genes. Few genes (<5%) were uniquely regulated by ARID3A or ARID3B. ARID3A/B induced genes involved in cancer and stem cell processes including: Twist, MYCN, MMP2, GLI2, TIMP3, and WNT5B. We found that ARID3A and ARID3B also induced expression of each other, providing evidence of the cooperativity. While ARID3A and ARID3B likely have unique functions in distinct contexts, they are largely capable of regulating the same stem cell genes in cancer cells. This study provides a comprehensive list of genes and pathways regulated by ARID3A and ARID3B in ovarian cancer cells.
ARID3A 和 ARID3B 是富含 AT 序列的互作结构域(ARID)家族的两个基因。ARID3A 和 ARID3B 可结合调控 B 细胞和癌症中的基因。我们是第一个证明 ARID3B 可调控干细胞基因并促进癌症干细胞表型的研究团队。重要的是,小鼠中的不同敲除表型和成年动物中的不同表达模式表明 ARID3A 和 ARID3B 可能具有独特的功能。此外,高水平的 ARID3B 而非 ARID3A 可诱导细胞死亡。我们的目标是适度表达 ARID3A、ARID3B 或两者(在癌症中可以观察到),然后鉴定 ARID3 调控的基因。我们用 ARID3A-GFP、ARID3B-RFP 或两者转导卵巢癌细胞。进行 RNA 测序。ARID3A 和 ARID3B 调控了几乎相同的基因集。只有少数基因(<5%)被 ARID3A 或 ARID3B 特异性调控。ARID3A/B 诱导的基因涉及癌症和干细胞过程,包括:Twist、MYCN、MMP2、GLI2、TIMP3 和 WNT5B。我们发现 ARID3A 和 ARID3B 也可诱导彼此的表达,这提供了它们协同作用的证据。虽然 ARID3A 和 ARID3B 在不同的背景下可能具有独特的功能,但它们在癌细胞中能够很大程度上调控相同的干细胞基因。本研究提供了 ARID3A 和 ARID3B 在卵巢癌细胞中调控的基因和通路的综合列表。