FOXA1 mutations alter pioneering activity, differentiation and prostate cancer phenotypes

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作者
Elizabeth J. Adams
Wouter R. Karthaus
Elizabeth Hoover
Deli Liu
Antoine Gruet
Zeda Zhang
Hyunwoo Cho
Rose DiLoreto
Sagar Chhangawala
Yang Liu
Philip A. Watson
Elai Davicioni
Andrea Sboner
Christopher E. Barbieri
Rohit Bose
Christina S. Leslie
Charles L. Sawyers
机构
[1] Memorial Sloan Kettering Cancer Center,Human Oncology and Pathogenesis Program
[2] Weill Cornell Medicine,Sandra and Edward Meyer Cancer Center
[3] Weill Cornell Medicine,Department of Urology
[4] Weill Cornell Medical College,HRH Prince Alwaleed Bin Talal Bin Abdulaziz Alsaud Institute for Computational Biomedicine
[5] Memorial Sloan Kettering Cancer Center,Center for Epigenetics Research
[6] Memorial Sloan Kettering Cancer Center,Louis V. Gerstner Jr Graduate School of Biomedical Sciences
[7] Memorial Sloan Kettering Cancer Center,Computational and Systems Biology Program
[8] Weill Cornell Graduate School,Physiology, Biophysics, and Systems Biology Program
[9] Weill Cornell Medicine,Tri
[10] GenomeDx Bioscience,Institutional Training Program in Computational Biology & Medicine
[11] Englander Institute for Precision Medicine of Weill Cornell Medicine and NewYork-Presbyterian Hospital,Departments of Anatomy, Medicine and Urology
[12] University of California,undefined
[13] San Francisco,undefined
[14] Howard Hughes Medical Institute,undefined
来源
Nature | 2019年 / 571卷
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摘要
Mutations in the transcription factor FOXA1 define a unique subset of prostate cancers but the functional consequences of these mutations and whether they confer gain or loss of function is unknown1–9. Here, by annotating the landscape of FOXA1 mutations from 3,086 human prostate cancers, we define two hotspots in the forkhead domain: Wing2 (around 50% of all mutations) and the highly conserved DNA-contact residue R219 (around 5% of all mutations). Wing2 mutations are detected in adenocarcinomas at all stages, whereas R219 mutations are enriched in metastatic tumours with neuroendocrine histology. Interrogation of the biological properties of wild-type FOXA1 and fourteen FOXA1 mutants reveals gain of function in mouse prostate organoid proliferation assays. Twelve of these mutants, as well as wild-type FOXA1, promoted an exaggerated pro-luminal differentiation program, whereas two different R219 mutants blocked luminal differentiation and activated a mesenchymal and neuroendocrine transcriptional program. Assay for transposase-accessible chromatin using sequencing (ATAC-seq) of wild-type FOXA1 and representative Wing2 and R219 mutants revealed marked, mutant-specific changes in open chromatin at thousands of genomic loci and exposed sites of FOXA1 binding and associated increases in gene expression. Of note, ATAC-seq peaks in cells expressing R219 mutants lacked the canonical core FOXA1-binding motifs (GTAAAC/T) but were enriched for a related, non-canonical motif (GTAAAG/A), which was preferentially activated by R219-mutant FOXA1 in reporter assays. Thus, FOXA1 mutations alter its pioneering function and perturb normal luminal epithelial differentiation programs, providing further support for the role of lineage plasticity in cancer progression.
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页码:408 / 412
页数:4
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