Literature DB >> 28549597

Prolactin receptor targeting in breast and prostate cancers: New insights into an old challenge.

Vincent Goffin1.   

Abstract

In the era of precision medicine, the identification of new targets is a constant challenge to improve cancer therapy. Preclinical investigations, epidemiological studies and analyses of tissue specimens from patients strongly support the contribution of prolactin receptor (PRLR) signaling to breast and prostate tumorigenesis and cancer progression. Although a clear causative link with mutations of the genes encoding prolactin or its receptor is lacking, increased PRLR signaling in these cancers can be assessed by the overexpression of cognate proteins and is often confirmed by over-activation of downstream signaling effectors. Nevertheless, the PRLR neutralizing antibody LFA102 tested recently in a Phase I trial in advanced, PRLR-positive prostate cancer and breast cancer patients failed to provide any clinical benefit. This underlines the need to better understand the actual impact of PRLR signaling on the progression of these cancers. Canonical PRLR-triggered signaling cascades include STAT5A/B, ERK1/2, PI3K/Akt, FAK and Src family kinases. Recent studies suggested that the nature and the outcome of PRLR signaling might be markedly different in breast than in prostate cancer. In the latter, like in many organs, PRLR/STAT5 signaling acts as a pro-tumorigenic pathway. In particular, it promotes the amplification of treatment-resistant prostate stem/progenitor cells, predicts early cancer recurrence and favors metastatic dissemination. In contrast, PRLR/STAT5 signaling was recently proposed to prevent breast cancer cell dissemination and to predict favorable clinical outcomes. While there is no evidence that pathways other than STAT5 are activated by prolactin in the prostate, these alternate signaling cascades may be primarily responsible for the pro-tumorigenic effects of prolactin in breast cancer. If these conclusions are confirmed in future studies, the therapeutic targeting of PRLR signaling in breast and prostate cancer may warrant the development of organ-specific strategies.
Copyright © 2017 Elsevier Inc. All rights reserved.

Entities:  

Keywords:  Androgen deprivation therapy; Cancer relapse; STAT5; Stem/progenitor cells; Targeted therapy

Mesh:

Substances:

Year:  2017        PMID: 28549597     DOI: 10.1016/j.pharmthera.2017.05.009

Source DB:  PubMed          Journal:  Pharmacol Ther        ISSN: 0163-7258            Impact factor:   12.310


  21 in total

1.  Prolactin signaling drives tumorigenesis in human high grade serous ovarian cancer cells and in a spontaneous fallopian tube derived model.

Authors:  Subbulakshmi Karthikeyan; Angela Russo; Matthew Dean; Daniel D Lantvit; Michael Endsley; Joanna E Burdette
Journal:  Cancer Lett       Date:  2018-07-05       Impact factor: 8.679

2.  Identification and validation of microRNAs that synergize with miR-34a - a basis for combinatorial microRNA therapeutics.

Authors:  Esteban A Orellana; Chennan Li; Alexa Lisevick; Andrea L Kasinski
Journal:  Cell Cycle       Date:  2019-07-01       Impact factor: 4.534

3.  Novel insights linking BRCA1-IRIS role in mammary gland development to formation of aggressive PABCs: the case for longer breastfeeding.

Authors:  Patricia Castillo; Omonigho Aisagbonhi; Cheryl C Saenz; Wael M ElShamy
Journal:  Am J Cancer Res       Date:  2022-01-15       Impact factor: 6.166

4.  Serum hormone levels and normal breast histology among premenopausal women.

Authors:  Mark E Sherman; Thomas de Bel; Michael G Heckman; Launia J White; Joshua Ogony; Melody Stallings-Mann; Tracy Hilton; Amy C Degnim; Robert A Vierkant; Tanya Hoskin; Matthew R Jensen; Laura Pacheco-Spann; Jill E Henry; Anna Maria Storniolo; Jodi M Carter; Stacey J Winham; Derek C Radisky; Jeroen van der Laak
Journal:  Breast Cancer Res Treat       Date:  2022-05-03       Impact factor: 4.624

5.  Repositioning Dopamine D2 Receptor Agonist Bromocriptine to Enhance Docetaxel Chemotherapy and Treat Bone Metastatic Prostate Cancer.

Authors:  Yang Yang; Kenza Mamouni; Xin Li; Yanhua Chen; Sravan Kavuri; Yuhong Du; Haian Fu; Omer Kucuk; Daqing Wu
Journal:  Mol Cancer Ther       Date:  2018-06-15       Impact factor: 6.261

6.  Expression of long-form prolactin receptor is associated with lower disease-free and overall survival in node-negative breast cancer patients.

Authors:  Doonyapat Sa-Nguanraksa; Kwanlada Mitpakdi; Norasate Samarnthai; Thanawat Thumrongtaradol; Pornchai O-Charoenrat
Journal:  Gland Surg       Date:  2021-01

7.  Testosterone, prolactin, and oncogenic regulation of the prostate gland. A new concept: Testosterone-independent malignancy is the development of prolactin-dependent malignancy!

Authors:  Leslie C Costello; Renty B Franklin
Journal:  Oncol Rev       Date:  2018-07-04

Review 8.  Prostatic cancers: understanding their molecular pathology and the 2016 WHO classification.

Authors:  Kentaro Inamura
Journal:  Oncotarget       Date:  2018-02-16

9.  A novel bispecific antibody targeting CD3 and prolactin receptor (PRLR) against PRLR-expression breast cancer.

Authors:  Yuexian Zhou; Huifang Zong; Lei Han; Yueqing Xie; Hua Jiang; John Gilly; Baohong Zhang; Huili Lu; Jie Chen; Rui Sun; Zhidi Pan; Jianwei Zhu
Journal:  J Exp Clin Cancer Res       Date:  2020-05-12

Review 10.  Role of PI3K/AKT pathway in cancer: the framework of malignant behavior.

Authors:  Ningni Jiang; Qijie Dai; Xiaorui Su; Jianjiang Fu; Xuancheng Feng; Juan Peng
Journal:  Mol Biol Rep       Date:  2020-04-24       Impact factor: 2.742

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