Program in Cancer Biology and.
Medical Scientist Training Program, Vanderbilt University School of Medicine, Nashville, Tennessee, USA.
JCI Insight. 2022 May 23;7(10):e153045. doi: 10.1172/jci.insight.153045.
Aberrant epithelial differentiation and regeneration contribute to colon pathologies, including inflammatory bowel disease (IBD) and colitis-associated cancer (CAC). Myeloid translocation gene 16 (MTG16, also known as CBFA2T3) is a transcriptional corepressor expressed in the colonic epithelium. MTG16 deficiency in mice exacerbates colitis and increases tumor burden in CAC, though the underlying mechanisms remain unclear. Here, we identified MTG16 as a central mediator of epithelial differentiation, promoting goblet and restraining enteroendocrine cell development in homeostasis and enabling regeneration following dextran sulfate sodium-induced (DSS-induced) colitis. Transcriptomic analyses implicated increased Ephrussi box-binding transcription factor (E protein) activity in MTG16-deficient colon crypts. Using a mouse model with a point mutation that attenuates MTG16:E protein interactions (Mtg16P209T), we showed that MTG16 exerts control over colonic epithelial differentiation and regeneration by repressing E protein-mediated transcription. Mimicking murine colitis, MTG16 expression was increased in biopsies from patients with active IBD compared with unaffected controls. Finally, uncoupling MTG16:E protein interactions partially phenocopied the enhanced tumorigenicity of Mtg16-/- colon in the azoxymethane/DSS-induced model of CAC, indicating that MTG16 protects from tumorigenesis through additional mechanisms. Collectively, our results demonstrate that MTG16, via its repression of E protein targets, is a key regulator of cell fate decisions during colon homeostasis, colitis, and cancer.
上皮细胞分化和再生异常导致结直肠病变,包括炎症性肠病(IBD)和结肠炎相关癌症(CAC)。髓系易位基因 16(MTG16,也称为 CBFA2T3)是一种在结肠上皮细胞中表达的转录核心抑制物。在 CAC 中,MTG16 基因敲除的小鼠结肠炎加重且肿瘤负担增加,但潜在机制尚不清楚。在这里,我们发现 MTG16 是上皮细胞分化的核心调节剂,促进杯状细胞和抑制肠内分泌细胞的发育,在葡聚糖硫酸钠(DSS)诱导的结肠炎后促进再生。转录组分析表明,MTG16 缺陷的结肠隐窝中 Ephrussi 盒结合转录因子(E 蛋白)活性增加。使用一种点突变的小鼠模型(减弱 MTG16:E 蛋白相互作用的 Mtg16P209T),我们表明 MTG16 通过抑制 E 蛋白介导的转录来控制结肠上皮细胞的分化和再生。模拟小鼠结肠炎,与未受影响的对照相比,患有活动性 IBD 的患者活检样本中的 MTG16 表达增加。最后,MTG16:E 蛋白相互作用的解偶联部分模拟了 Mtg16-/-结肠在氧化偶氮甲烷/DSS 诱导的 CAC 模型中增强的致瘤性,表明 MTG16 通过其他机制保护免受肿瘤发生。总之,我们的结果表明,MTG16 通过抑制 E 蛋白靶基因,是结肠稳态、结肠炎和癌症期间细胞命运决定的关键调节剂。