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Targeting YAP-Dependent MDSC Infiltration Impairs Tumor Progression

delete2016-01-07
delete446
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OA
AI
G
Guocan Wang
X
Xin Lü
P
Prasenjit Dey
P
Pingna Deng
C
Chia-Chin Wu
S
Shan Jiang
Z
Zhuangna Fang
Z
Zhao, Kuo
R
Ramakrishna Konaparthi
S
Sujun Hua
张建华 cover
张建华 (Jianhua Zhang)
E
Elsa M. Li-Ning-Tapia
A
Avnish Kapoor
C
Chang‐Jiun Wu
N
Neelay Bhaskar Patel
Z
Zhenglin Guo
V
Vandhana Ramamoorthy
T
Trang N. Tieu
T
Tim Heffernan
D
Di Zhao
X
Xiaoying Shang
S
Sunada Khadka
P
Pingping Hou
B
Baoli Hu
E
Eun‐Jung Jin
W
Wantong Yao
X
Xiaolu Pan
Z
Zhihu Ding
史艳侠 (Yanxia Shi)
L
Li, Liren
Q
Qing Chang
P
Patricia Troncoso
C
Christopher J. Logothetis
M
Mark J. McArthur
L
Lynda Chin
Y
Yin Wang *
R
Ronald A. DePinho *
DOI:10.1158/2159-8290.CD-15-0224delete
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Abstract

Abstract

En 中文
The signaling mechanisms between prostate cancer cells and infiltrating immune cells may illuminate novel therapeutic approaches. Here, utilizing a prostate adenocarcinoma model driven by loss of Pten and Smad4, we identify polymorphonuclear myeloid-derived suppressor cells (MDSC) as the major infiltrating immune cell type, and depletion of MDSCs blocks progression. Employing a novel dual reporter prostate cancer model, epithelial and stromal transcriptomic profiling identified CXCL5 as a cancer-secreted chemokine to attract CXCR2-expressing MDSCs, and, correspondingly, pharmacologic inhibition of CXCR2 impeded tumor progression. Integrated analyses identified hyperactivated Hippo-YAP signaling in driving CXCL5 upregulation in cancer cells through the YAP-TEAD complex and promoting MDSC recruitment. Clinicopathologic studies reveal upregulation and activation of YAP1 in a subset of human prostate tumors, and the YAP1 signature is enriched in primary prostate tumor samples with stronger expression of MDSC-relevant genes. Together, YAP-driven MDSC recruitment via heterotypic CXCL5-CXCR2 signaling reveals an effective therapeutic strategy for advanced prostate cancer. SIGNIFICANCE: We demonstrate a critical role of MDSCs in prostate tumor progression and discover a cancer cell nonautonomous function of the Hippo-YAP pathway in regulation of CXCL5, a ligand for CXCR2-expressing MDSCs. Pharmacologic elimination of MDSCs or blocking the heterotypic CXCL5-CXCR2 signaling circuit elicits robust antitumor responses and prolongs survival. (C) 2015 AACR.
Keywords:
SUPPRESSOR-CELLS
PROSTATE-CANCER
MYELOID CELLS
CELLULAR SENESCENCE
KRAS
HETEROGENEITY
INHIBITION
CARCINOMA
PATHWAY
GROWTH
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Journal

Cancer Discovery cover
Cancer Discovery
IF:
33.3
Papers:
3.9K
Citations:
3.7W

Organization

U
utmd anderson cancer center
Scholars:
3.0W
Papers: 2.4W
Citations: 27
S
Sun Yat Sen University
Scholars:
9.9W
Papers: 7.2W
Citations: 95
U
university of texas system
Scholars:
18.3W
Papers: 15.5W
Citations: 210
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