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BET Bromodomain Inhibition Blocks an AR-Repressed, E2F1-Activated Treatment-Emergent Neuroendocrine Prostate Cancer Lineage Plasticity Program

delete2021-06-18
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OA
AI
K
Kim, Dae-Hwan
S
Sun, Duanchen
W
William K. Storck
K
Katherine Welker Leng
C
Chelsea Jenkins
D
Daniel J. Coleman
S
Sampson, David
X
Xiangnan Guan
A
Anbarasu Kumaraswamy
E
Eva S. Rodansky
U
Urrutia, Joshua A.
J
Jacob Schwartzman
Z
Zhang, Chao
B
Beltran, Himisha
M
Mark P. Labrecque
M
Morrissey, Colm
L
Lucas, Jared M.
C
Coleman, Ilsa M.
N
Nelson, Peter S.
C
Corey, Eva
H
Handelman, Samuel K.
S
Sexton, Jonathan Z.
A
Aggarwal, Rahul
A
Abida, Wassim
F
Feng, Felix Y.
S
Small, Eric J.
D
Daniel E. Spratt
A
Armand Bankhead
R
Rao, Arvind
E
Emily M. Gesner
S
Sarah Attwell
S
Sanjay Lakhotia
C
Campeau, Eric
J
Joel A. Yates
Z
Zheng Xia
A
Alumkal, Joshi J. *
DOI:10.1158/1078-0432.CCR-20-4968delete
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Abstract

Abstract

En 中文
Purpose: Lineage plasticity in prostate cancer-most commonly exemplified by loss of androgen receptor (AR) signaling and a switch from a luminal to alternate differentiation program-is now recognized as a treatment resistance mechanism. Lineage plasticity is a spectrum, but neuroendocrine prostate cancer (NEPC) is the most virulent example. Currently, there are limited treatments for NEPC. Moreover, the incidence of treatment-emergent NEPC (t-NEPC) is increasing in the era of novel AR inhibitors. In contradistinction to de novo NEPC, t-NEPC tumors often express the AR, but AR's functional role in t-NEPC is unknown. Furthermore, targetable factors that promote t-NEPC lineage plasticity are also unclear. Experimental Design: Using an integrative systems biology approach, we investigated enzalutamide-resistant t-NEPC cell lines and their parental, enzalutamide-sensitive adenocarcinoma cell lines. The AR is still expressed in these t-NEPC cells, enabling us to determine the role of the AR and other key factors in regulating t-NEPC lineage plasticity. Results: AR inhibition accentuates lineage plasticity in t-NEPC cells-an effect not observed in parental, enzalutamide-sensitive adenocarcinoma cells. Induction of an AR-repressed, lineage plasticity program is dependent on activation of the transcription factor E2F1 in concert with the BET bromodomain chromatin reader BRD4. BET inhibition (BETi) blocks this E2F1/BRD4-regulated program and decreases growth of t-NEPC tumor models and a subset of t-NEPC patient tumors with high activity of this program in a BETi clinical trial. Conclusions: E2F1 and BRD4 are critical for activating an AR-repressed, t-NEPC lineage plasticity program. BETi is a promising approach to block this program.
Keywords:
ENZALUTAMIDE
RESISTANCE
ABIRATERONE
METASTASIS
MECHANISM
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Clinical Cancer Research cover
Clinical Cancer Research
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10.2
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