Zhong Zheng, Harmston Nathan, Wood Kris C, Madan Babita, Virshup David M
Program in Cancer and Stem Cell Biology, Duke-NUS Medical School, Singapore.
Department of Physiology, National University of Singapore, Singapore.
J Clin Invest. 2022 Jun 15;132(12). doi: 10.1172/JCI156305.
Wnt signaling regulates the balance between stemness and differentiation in multiple tissues and in cancer. RNF43-mutant pancreatic cancers are dependent on Wnt production, and pharmacologic blockade of the pathway, e.g., by PORCN inhibitors, leads to tumor differentiation. However, primary resistance to these inhibitors has been observed. To elucidate potential mechanisms, we performed in vivo CRISPR screens in PORCN inhibitor-sensitive RNF43-mutant pancreatic cancer xenografts. As expected, genes in the Wnt pathway whose loss conferred drug resistance were identified, including APC, AXIN1, and CTNNBIP1. Unexpectedly, the screen also identified the histone acetyltransferase EP300 (p300), but not its paralog, CREBBP (CBP). We found that EP300 is silenced due to genetic alterations in all the existing RNF43-mutant pancreatic cancer cell lines that are resistant to PORCN inhibitors. Mechanistically, loss of EP300 directly downregulated GATA6 expression, thereby silencing the GATA6-regulated differentiation program and leading to a phenotypic transition from the classical subtype to the dedifferentiated basal-like/squamous subtype of pancreatic cancer. EP300 mutation and loss of GATA6 function bypassed the antidifferentiation activity of Wnt signaling, rendering these cancer cells resistant to Wnt inhibition.
Wnt信号通路调节多种组织以及癌症中干性与分化之间的平衡。RNF43突变型胰腺癌依赖Wnt信号的产生,对该信号通路进行药物阻断,例如使用PORCN抑制剂,可导致肿瘤分化。然而,已观察到对这些抑制剂的原发性耐药。为了阐明潜在机制,我们在对PORCN抑制剂敏感的RNF43突变型胰腺癌异种移植物中进行了体内CRISPR筛选。正如预期的那样,鉴定出了Wnt信号通路中缺失后会导致耐药的基因,包括APC、AXIN1和CTNNBIP1。出乎意料的是,筛选还鉴定出了组蛋白乙酰转移酶EP300(p300),但未鉴定出其旁系同源物CREBBP(CBP)。我们发现,在所有对PORCN抑制剂耐药的现有RNF43突变型胰腺癌细胞系中,EP300由于基因改变而沉默。从机制上讲,EP300的缺失直接下调了GATA6的表达,从而使GATA6调节的分化程序沉默,并导致胰腺癌从经典亚型向去分化的基底样/鳞状亚型发生表型转变。EP300突变和GATA6功能丧失绕过了Wnt信号通路的抗分化活性,使这些癌细胞对Wnt抑制产生耐药。