TY - JOUR
T1 - A molecular switch from tumor suppressor to oncogene in ER+ve breast cancer
T2 - Role of androgen receptor, JAK-STAT, and lineage plasticity
AU - Asemota, Sarah
AU - Effah, Wendy
AU - Holt, Jeremiah
AU - Johnson, Daniel
AU - Cripe, Linnea
AU - Ponnusamy, Suriyan
AU - Thiyagarajan, Thirumagal
AU - Khosrosereshki, Yekta
AU - Hwang, Dong Jin
AU - He, Yali
AU - Grimes, Brandy
AU - Fleming, Martin D.
AU - Pritchard, Frances E.
AU - Hendrix, Ashley
AU - Fan, Meiyun
AU - Jain, Abhinav
AU - Choi, Hyo Young
AU - Makowski, Liza
AU - Hayes, D. Neil
AU - Miller, Duane D.
AU - Pfeffer, Lawrence M.
AU - Santhanam, Balaji
AU - Narayanan, Ramesh
N1 - Publisher Copyright:
© 2024 the Author(s).
PY - 2024/10/1
Y1 - 2024/10/1
N2 - Cancers develop resistance to inhibitors of oncogenes mainly due to target-centric mechanisms such as mutations and splicing. While inhibitors or antagonists force targets to unnatural conformation contributing to protein instability and resistance, activating tumor suppressors may maintain the protein in an agonistic conformation to elicit sustainable growth inhibition. Due to the lack of tumor suppressor agonists, this hypothesis and the mechanisms underlying resistance are not understood. In estrogen receptor (ER)-positive breast cancer (BC), androgen receptor (AR) is a druggable tumor suppressor offering a promising avenue for this investigation. Spatial genomics suggests that the molecular portrait of AR-expressing BC cells in tumor microenvironment corresponds to better overall patient survival, clinically confirming AR's role as a tumor suppressor. Ligand activation of AR in ER-positive BC xenografts reprograms cistromes, inhibits oncogenic pathways, and promotes cellular elasticity toward a more differentiated state. Sustained AR activation results in cistrome rearrangement toward transcription factor PROP paired-like homeobox 1, transformation of AR into oncogene, and activation of the Janus kinase/signal transducer (JAK/STAT) pathway, all culminating in lineage plasticity to an aggressive resistant subtype. While the molecular profile of AR agonist- sensitive tumors corresponds to better patient survival, the profile represented in the resistant phenotype corresponds to shorter survival. Inhibition of activated oncogenes in resistant tumors reduces growth and resensitizes them to AR agonists. These findings indicate that persistent activation of a context-dependent tumor suppressor may lead to resistance through lineage plasticity-driven tumor metamorphosis. Our work provides a framework to explore the above phenomenon across multiple cancer types and underscores the importance of factoring sensitization of tumor suppressor targets while developing agonist-like drugs.
AB - Cancers develop resistance to inhibitors of oncogenes mainly due to target-centric mechanisms such as mutations and splicing. While inhibitors or antagonists force targets to unnatural conformation contributing to protein instability and resistance, activating tumor suppressors may maintain the protein in an agonistic conformation to elicit sustainable growth inhibition. Due to the lack of tumor suppressor agonists, this hypothesis and the mechanisms underlying resistance are not understood. In estrogen receptor (ER)-positive breast cancer (BC), androgen receptor (AR) is a druggable tumor suppressor offering a promising avenue for this investigation. Spatial genomics suggests that the molecular portrait of AR-expressing BC cells in tumor microenvironment corresponds to better overall patient survival, clinically confirming AR's role as a tumor suppressor. Ligand activation of AR in ER-positive BC xenografts reprograms cistromes, inhibits oncogenic pathways, and promotes cellular elasticity toward a more differentiated state. Sustained AR activation results in cistrome rearrangement toward transcription factor PROP paired-like homeobox 1, transformation of AR into oncogene, and activation of the Janus kinase/signal transducer (JAK/STAT) pathway, all culminating in lineage plasticity to an aggressive resistant subtype. While the molecular profile of AR agonist- sensitive tumors corresponds to better patient survival, the profile represented in the resistant phenotype corresponds to shorter survival. Inhibition of activated oncogenes in resistant tumors reduces growth and resensitizes them to AR agonists. These findings indicate that persistent activation of a context-dependent tumor suppressor may lead to resistance through lineage plasticity-driven tumor metamorphosis. Our work provides a framework to explore the above phenomenon across multiple cancer types and underscores the importance of factoring sensitization of tumor suppressor targets while developing agonist-like drugs.
KW - androgen receptor
KW - breast cancer
KW - estrogen receptor
KW - JAK STAT
KW - tumor suppressor
UR - https://www.scopus.com/pages/publications/85205084785
UR - https://www.scopus.com/pages/publications/85205084785#tab=citedBy
U2 - 10.1073/pnas.2406837121
DO - 10.1073/pnas.2406837121
M3 - Article
C2 - 39312663
AN - SCOPUS:85205084785
SN - 0027-8424
VL - 121
JO - Proceedings of the National Academy of Sciences of the United States of America
JF - Proceedings of the National Academy of Sciences of the United States of America
IS - 40
M1 - e2406837121
ER -