Literature DB >> 32042745

Restoration of FKBP51 protein promotes the progression of castration resistant prostate cancer.

Jianpeng Yu1, Libin Sun1,2, Tangxi Hao1, Boya Zhang1, Xuanrong Chen1, Hanlin Li1, Zheng Zhang1, Shimiao Zhu1, Changyi Quan1, Yuanjie Niu1, Zhiqun Shang1.   

Abstract

BACKGROUND: As deregulation of androgen receptor (AR) signaling target genes is associated with tumorigenesis and the development of prostate cancer (PCa), AR signaling is the primary therapeutic target for PCa. Although patients initially responses to first-line androgen deprivation therapies (ADTs), most of them with advanced PCa progress to lethal castration-resistant prostate cancer (CRPC). Recent studies have suggested the molecular mechanisms by which AR elicit the robust up-regulation of the FKBP51 gene. We suggest that restored expression of FKBP51 gene, modulated by androgen receptor splicing variant 7 (AR-V7) which replaces full length androgen receptor (AR-FL) in androgen ablation status, promotes CRPC progression through activating NF-κB signaling.
METHODS: Immunohistochemistry assays were used to detect the expression of AR-V7, FKBP51 and NF-κB signaling correlated proteins in CRPC tissues. An androgen ablation resistant PCa cell line model established by Long-term culturing in androgen depleted medium, named androgen-independent LNCaP (LNCaP-AI) cells, were used to dynamically monitor FKBP51 expression during the process of androgen dependent PCa cells transforming into androgen-independent cells, as well as its association with NF-κB signal pathway. LNCaP-AI cell line was determined to express AR-V7 protein continuously. Luciferase reporter assays and DNA pull down were used to determine the association between AR-V7 and FKBP51.
RESULTS: Our results suggested that CRPC patients with AR-V7 high expression tend to have higher expression of FKBP51 and enhanced NF-κB signaling compared with AR-V7 negative patients. Knockdown of AR-V7 or FKBP51 in LNCaP-AI cells attenuated the level of p-NF-κB (Ser536) and androgen-resistant cells growth. Luciferase reporter assays and DNA pull down results indicated that FKBP51 was transcriptionally promoted by AR-V7 in absence of androgen, which enhanced NF-κB signaling.
CONCLUSIONS: Because of upregulation of AR-V7 in androgen-independent PCa cells, increasing of FKBP51 induced NF-κB signaling, leading to progression of CRPC. 2019 Annals of Translational Medicine. All rights reserved.

Entities:  

Keywords:  AR-V7; Castration resistant prostate cancer; FKBP51; NF-κB

Year:  2019        PMID: 32042745      PMCID: PMC6990039          DOI: 10.21037/atm.2019.11.127

Source DB:  PubMed          Journal:  Ann Transl Med        ISSN: 2305-5839


  42 in total

Review 1.  NF-κB addiction and its role in cancer: 'one size does not fit all'.

Authors:  M M Chaturvedi; B Sung; V R Yadav; R Kannappan; B B Aggarwal
Journal:  Oncogene       Date:  2010-12-20       Impact factor: 9.867

2.  Androgen receptor gene expression in prostate cancer is directly suppressed by the androgen receptor through recruitment of lysine-specific demethylase 1.

Authors:  Changmeng Cai; Housheng Hansen He; Sen Chen; Ilsa Coleman; Hongyun Wang; Zi Fang; Shaoyong Chen; Peter S Nelson; X Shirley Liu; Myles Brown; Steven P Balk
Journal:  Cancer Cell       Date:  2011-10-18       Impact factor: 31.743

3.  ARv7 Represses Tumor-Suppressor Genes in Castration-Resistant Prostate Cancer.

Authors:  Laura Cato; Jonas de Tribolet-Hardy; Irene Lee; Jaice T Rottenberg; Ilsa Coleman; Diana Melchers; René Houtman; Tengfei Xiao; Wei Li; Takuma Uo; Shihua Sun; Nane C Kuznik; Bettina Göppert; Fatma Ozgun; Martin E van Royen; Adriaan B Houtsmuller; Raga Vadhi; Prakash K Rao; Lewyn Li; Steven P Balk; Robert B Den; Bruce J Trock; R Jeffrey Karnes; Robert B Jenkins; Eric A Klein; Elai Davicioni; Friederike J Gruhl; Henry W Long; X Shirley Liu; Andrew C B Cato; Nathan A Lack; Peter S Nelson; Stephen R Plymate; Anna C Groner; Myles Brown
Journal:  Cancer Cell       Date:  2019-02-14       Impact factor: 31.743

4.  Cell autonomous role of PTEN in regulating castration-resistant prostate cancer growth.

Authors:  David J Mulholland; Linh M Tran; Yunfeng Li; Houjian Cai; Ashkan Morim; Shunyou Wang; Seema Plaisier; Isla P Garraway; Jiaoti Huang; Thomas G Graeber; Hong Wu
Journal:  Cancer Cell       Date:  2011-05-27       Impact factor: 31.743

Review 5.  Steroid up-regulation of FKBP51 and its role in hormone signaling.

Authors:  Tiina Jääskeläinen; Harri Makkonen; Jorma J Palvimo
Journal:  Curr Opin Pharmacol       Date:  2011-04-29       Impact factor: 5.547

6.  Dysregulated expression of androgen-responsive and nonresponsive genes in the androgen-independent prostate cancer xenograft model CWR22-R1.

Authors:  L C Amler; D B Agus; C LeDuc; M L Sapinoso; W D Fox; S Kern; D Lee; V Wang; M Leysens; B Higgins; J Martin; W Gerald; N Dracopoli; C Cordon-Cardo; H I Scher; G M Hampton
Journal:  Cancer Res       Date:  2000-11-01       Impact factor: 12.701

Review 7.  Androgen receptor variant-driven prostate cancer: clinical implications and therapeutic targeting.

Authors:  E S Antonarakis; A J Armstrong; S M Dehm; J Luo
Journal:  Prostate Cancer Prostatic Dis       Date:  2016-05-17       Impact factor: 5.554

8.  Androgen receptor and its splice variant, AR-V7, differentially regulate FOXA1 sensitive genes in LNCaP prostate cancer cells.

Authors:  William C Krause; Ayesha A Shafi; Manjula Nakka; Nancy L Weigel
Journal:  Int J Biochem Cell Biol       Date:  2014-07-04       Impact factor: 5.085

Review 9.  Understanding the mechanisms of androgen deprivation resistance in prostate cancer at the molecular level.

Authors:  Theodoros Karantanos; Christopher P Evans; Bertrand Tombal; Timothy C Thompson; Rodolfo Montironi; William B Isaacs
Journal:  Eur Urol       Date:  2014-10-08       Impact factor: 20.096

Review 10.  Screening for prostate cancer with the prostate-specific antigen test: a review of current evidence.

Authors:  Julia H Hayes; Michael J Barry
Journal:  JAMA       Date:  2014-03-19       Impact factor: 56.272

View more
  5 in total

1.  FKBP51 promotes invasion and migration by increasing the autophagic degradation of TIMP3 in clear cell renal cell carcinoma.

Authors:  Shengying Qin; Muyun Wei; Shaowei Mao; Di Zhang; Luan Chen; Jie Tan; Yunpeng Chu; Sijia Huang; Wenqi Zhou; Hengwei Qin; Qinghua Xia; Yueran Zhao; Rongxiu Li
Journal:  Cell Death Dis       Date:  2021-10-01       Impact factor: 8.469

Review 2.  With or without You: Co-Chaperones Mediate Health and Disease by Modifying Chaperone Function and Protein Triage.

Authors:  Selin Altinok; Rebekah Sanchez-Hodge; Mariah Stewart; Kaitlan Smith; Jonathan C Schisler
Journal:  Cells       Date:  2021-11-11       Impact factor: 7.666

3.  CRPC Membrane-Camouflaged, Biomimetic Nanosystem for Overcoming Castration-Resistant Prostate Cancer by Cellular Vehicle-Aided Tumor Targeting.

Authors:  Kai Lu; Zheng Li; Qiang Hu; Jianfei Sun; Ming Chen
Journal:  Int J Mol Sci       Date:  2022-03-26       Impact factor: 5.923

4.  Non-drug efflux function of ABCC5 promotes enzalutamide resistance in castration-resistant prostate cancer via upregulation of P65/AR-V7.

Authors:  Haojie Chen; Jia Luo; Shaojun Chen; Bowen Shi; Xiaocui Zheng; Haiying Ji; Xiaoqian Zhang; Yujia Yin; Kun Du; Jie Ding; Yongjiang Yu
Journal:  Cell Death Discov       Date:  2022-05-03

5.  Dexamethasone Sensitizes Acute Monocytic Leukemia Cells to Ara-C by Upregulating FKBP51.

Authors:  Huanxin Sun; Xiaowen Liu; Laicheng Wang; Bin Cui; Wenli Mu; Yu Xia; Shuang Liu; Xin Liu; Yulian Jiao; Yueran Zhao
Journal:  Front Oncol       Date:  2022-07-04       Impact factor: 5.738

  5 in total

北京卡尤迪生物科技股份有限公司 © 2022-2023.