Evidence map›Paper›PMID 41321318›Full record

ArticleThe Journal of clinical investigation2025

Androgen deprivation-mediated activation of AKT is enhanced in prostate cancer with TMPRSS2:ERG fusion.

Fen Ma, Sen Chen, Luigi Cecchi, Betul Ersoy-Fazlioglu, Joshua W Russo, Seiji Arai, Seifeldin Awad, Carla Calagua, Fang Xie, Larysa Poluben and 11 more

Abstract read
In one paragraph

Article in The Journal of clinical investigation, 2025. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 4 papers.

0numbers the graph read from it
0cells of the map it votes in
4citing papers in PubMed
–field-weighted citation impact
1 · What the graph read from it

What it found

Each row is one number read from the abstract, on the scale the paper reported it, with its interval. Left of the dashed line favours the treatment, right favours the comparator. Under each row is the sentence it came from. New to these charts? A ten-minute tutorial.

The abstract states no effect estimate the extractor could read, or names no intervention and outcome on the map, so this paper lights no cell and moves no belief. It is still indexed, cited and linked below.

2 · The registry

The trial behind it

Trials whose registry record cites this paper, or whose number appears in the abstract. A trial that started after this paper was published is citing it as background, not reporting it.

Neither the registry nor the abstract names a trial number. If this is a trial report, that itself is worth knowing.

3 · Its place in the literature

Who cites it

4 citing papers in PubMed.

  1. Review
  2. Article
  3. Article
  4. Exploring therapeutic applications ofFrontiers in oncology · 2025
    Review
4 · The record

Corrections and comments

5 · Who and what money

Authors and funding

21 authors.

Fen MaDepartment of Medicine and Cancer Center, Beth Israel Deaconess Medical Center, Harvard Medical School, Boston, Massachusetts, USA.
Sen ChenDepartment of Medicine and Cancer Center, Beth Israel Deaconess Medical Center, Harvard Medical School, Boston, Massachusetts, USA.
Luigi CecchiDepartment of Medicine and Cancer Center, Beth Israel Deaconess Medical Center, Harvard Medical School, Boston, Massachusetts, USA.
Betul Ersoy-FazliogluDepartment of Medicine and Cancer Center, Beth Israel Deaconess Medical Center, Harvard Medical School, Boston, Massachusetts, USA.
Joshua W RussoDepartment of Medicine and Cancer Center, Beth Israel Deaconess Medical Center, Harvard Medical School, Boston, Massachusetts, USA.
Seiji AraiDepartment of Medicine and Cancer Center, Beth Israel Deaconess Medical Center, Harvard Medical School, Boston, Massachusetts, USA.
Seifeldin AwadDepartment of Medicine and Cancer Center, Beth Israel Deaconess Medical Center, Harvard Medical School, Boston, Massachusetts, USA.
Carla CalaguaDepartment of Medicine and Cancer Center, Beth Israel Deaconess Medical Center, Harvard Medical School, Boston, Massachusetts, USA.
Fang XieDepartment of Medicine and Cancer Center, Beth Israel Deaconess Medical Center, Harvard Medical School, Boston, Massachusetts, USA.
Larysa PolubenDepartment of Medicine and Cancer Center, Beth Israel Deaconess Medical Center, Harvard Medical School, Boston, Massachusetts, USA.
Olga VoznesenskyDepartment of Medicine and Cancer Center, Beth Israel Deaconess Medical Center, Harvard Medical School, Boston, Massachusetts, USA.
Anson T KuGenitourinary Malignancies Branch, National Cancer Institute, Bethesda, Maryland, USA.
Fatima KarzaiGenitourinary Malignancies Branch, National Cancer Institute, Bethesda, Maryland, USA.
Changmeng CaiCenter for Personalized Cancer Therapy and Department of Biology, University of Massachusetts Boston, Boston, Massachusetts, USA.
David J EinsteinDepartment of Medicine and Cancer Center, Beth Israel Deaconess Medical Center, Harvard Medical School, Boston, Massachusetts, USA.
Huihui YeDepartment of Medicine and Cancer Center, Beth Israel Deaconess Medical Center, Harvard Medical School, Boston, Massachusetts, USA.
Xin YuanDepartment of Medicine and Cancer Center, Beth Israel Deaconess Medical Center, Harvard Medical School, Boston, Massachusetts, USA.
Alex TokerDepartment of Pathology and Cancer Center, Beth Israel Deaconess Medical Center, and.
Mary-Ellen TaplinDepartment of Medical Oncology, Dana-Farber Cancer Institute, Harvard Medical School, Boston, Massachusetts, USA.
Adam G SowalskyGenitourinary Malignancies Branch, National Cancer Institute, Bethesda, Maryland, USA.
Steven P BalkDepartment of Medicine and Cancer Center, Beth Israel Deaconess Medical Center, Harvard Medical School, Boston, Massachusetts, USA.

Funding

U Mass Boston / DFHCC U54 Partnership (1 of 2)U54CA156732 · NCI · DANA-FARBER CANCER INST · PI Shoba Ramanadhan · 2010 to 2026
$25.6M
Steroid Metabolism in Castration-Resistant Prostate CancerP01CA163227 · NCI · BETH ISRAEL DEACONESS MEDICAL CENTER · PI Henry W. Long · 2013 to 2026
$25.0M
Discovery, Regulation and Function of the PI 3-Kinase and AKT Pathway in CancerR35CA253097 · NCI · BETH ISRAEL DEACONESS MEDICAL CENTER · PI Alex Toker · 2020 to 2026
$6.9M
SOX9 Mediation of AR and ERG Driven Prostate CancerR01CA168393 · NCI · BETH ISRAEL DEACONESS MEDICAL CENTER · PI BALK, STEVEN P., YUAN, XIN · 2014 to 2018
$1.8M
SOX9 in prostate cancer development and progressionR01DK079962 · NIDDK · BETH ISRAEL DEACONESS MEDICAL CENTER · PI YUAN, XIN · 2008 to 2012
$1.8M
WNT5a/ROR2-Mediated Hippo Pathway Activation in Prostate CancerR01CA272934 · NCI · BETH ISRAEL DEACONESS MEDICAL CENTER · PI Steven P. Balk, Xin Yuan · 2023 to 2026
$1.6M
Androgen Receptor and SRY/SOX Interaction in ProstateK01DK064739 · NIDDK · BETH ISRAEL DEACONESS MEDICAL CENTER · PI YUAN, XIN · 2003 to 2007
$646k
NCI NIH HHS P01 CA163227NCI NIH HHS R01 CA168393NCI NIH HHS R01 CA272934NCI NIH HHS R35 CA253097NCI NIH HHS U54 CA156732NIDDK NIH HHS K01 DK064739NIDDK NIH HHS R01 DK079962
6 · The paper itself

Abstract

TMPRSS2:ERG gene fusion (T:E fusion) in prostate adenocarcinoma (PCa) puts ERG under androgen receptor-regulated (AR-regulated) TMPRSS2 expression. T:E fusion is associated with PTEN loss and is highly associated with decreased INPP4B expression, which together may compensate for ERG-mediated suppression of AKT signaling. We confirmed in PCa cells and a mouse PCa model that ERG suppresses IRS2 and AKT activation. In contrast, ERG downregulation did not increase INPP4B, suggesting its decrease is indirect and reflects selective pressure to suppress INPP4B function. Notably, INPP4B expression was decreased in PTEN-intact and PTEN-deficient T:E fusion tumors, suggesting selection for a nonredundant function. As ERG in T:E fusion tumors is AR regulated, we further assessed whether AR inhibition increases AKT activity in T:E fusion tumors. A T:E fusion-positive PDX had increased AKT activity in vivo and response to AKT inhibition in vitro after androgen deprivation. Moreover, two clinical trials of neoadjuvant AR inhibition prior to radical prostatectomy showed greater increases in AKT activation in the T:E fusion-positive versus -negative tumors. These findings indicate that AKT activation may mitigate the efficacy of AR-targeted therapy in T:E fusion PCa and that these patients may most benefit from combination therapy targeting AR and AKT.

Indexed as

Oncogene Proteins, FusionProstatic NeoplasmsProto-Oncogene Proteins c-aktSerine EndopeptidasesAndrogensAnimalsCell Line, TumorHumansMaleMicePTEN PhosphohydrolaseReceptors, AndrogenTranscriptional Regulator ERGAndrogensERG protein, humanOncogene Proteins, FusionProto-Oncogene Proteins c-aktPTEN PhosphohydrolasePTEN protein, humanReceptors, AndrogenSerine EndopeptidasesTMPRSS2-ERG fusion protein, humanTMPRSS2 protein, humanTranscriptional Regulator ERGCell biologyInositol phosphatesOncogenesOncologyProstate cancer

Identifiers

PMID41321318
PMCPMC12646650

What OpenQuestion holds

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Registered trials

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Read under generation 80e0d062 · epoch 390. Bibliography from PubMed, PubMed Central and OpenAlex; grants from NIH RePORTER; trial links from ClinicalTrials.gov; estimates, votes and beliefs from the OpenQuestion graph.