AUTHOR=García García Carolina J. , Acevedo Diaz Ariana C. , Kumari Neeraj , Govindaraju Suman , de la Cruz Bonilla Marimar , San Lucas F. Anthony , Nguyen Nicholas D. , Jiménez Sacarello Iancarlos , Piwnica-Worms Helen , Maitra Anirban , Taniguchi Cullen M. TITLE=HIF2 Regulates Intestinal Wnt5a Expression JOURNAL=Frontiers in Oncology VOLUME=11 YEAR=2021 URL=https://www.frontiersin.org/journals/oncology/articles/10.3389/fonc.2021.769385 DOI=10.3389/fonc.2021.769385 ISSN=2234-943X ABSTRACT=
Radiation therapy for abdominal tumors is challenging because the small intestine is exquisitely radiosensitive. Unfortunately, there are no FDA-approved therapies to prevent or mitigate GI radiotoxicity. The EGLN protein family are oxygen sensors that regulate cell survival and metabolism through the degradation of hypoxia-inducible factors (HIFs). Our group has previously shown that stabilization of HIF2 through genetic deletion or pharmacologic inhibition of the EGLNs mitigates and protects against GI radiotoxicity in mice by improving intestinal crypt stem cell survival. Here we aimed to elucidate the molecular mechanisms by which HIF2 confers GI radioprotection. We developed duodenal organoids from mice, transiently overexpressed non-degradable HIF2, and performed bulk RNA sequencing. Interestingly, HIF2 upregulated known radiation modulators and genes involved in GI homeostasis, including