A reciprocal feedback between the PDZ binding kinase and androgen receptor drives prostate cancer

Elucidation of mechanisms underlying the increased androgen receptor (AR) activity and subsequent development of aggressive prostate cancer (PrCa) is pivotal in developing new therapies. Using a systems biology approach, we interrogated the AR-regulated proteome and identified PDZ binding kinase (PB...

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Main Authors: Warren, A, Massie, C, Watt, K, Luko, K, Orafidiya, F, Selth, L, Mohammed, H, Chohan, B, Menon, S, Baridi, A, Zhao, W, Escriu, C, Pungsrinont, T, D'Santos, C, Yang, X, Taylor, C, Qureshi, A, Zecchini, V, Shaw, G, Dehm, S, Mills, I, Carroll, J, Tilley, W, McEwan, I, Baniahmad, A, Neal, D, Asim, M
Format: Journal article
Language:English
Published: Springer Nature 2018
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author Warren, A
Massie, C
Watt, K
Luko, K
Orafidiya, F
Selth, L
Mohammed, H
Chohan, B
Menon, S
Baridi, A
Zhao, W
Escriu, C
Pungsrinont, T
D'Santos, C
Yang, X
Taylor, C
Qureshi, A
Zecchini, V
Shaw, G
Dehm, S
Mills, I
Carroll, J
Tilley, W
McEwan, I
Baniahmad, A
Neal, D
Asim, M
author_facet Warren, A
Massie, C
Watt, K
Luko, K
Orafidiya, F
Selth, L
Mohammed, H
Chohan, B
Menon, S
Baridi, A
Zhao, W
Escriu, C
Pungsrinont, T
D'Santos, C
Yang, X
Taylor, C
Qureshi, A
Zecchini, V
Shaw, G
Dehm, S
Mills, I
Carroll, J
Tilley, W
McEwan, I
Baniahmad, A
Neal, D
Asim, M
author_sort Warren, A
collection OXFORD
description Elucidation of mechanisms underlying the increased androgen receptor (AR) activity and subsequent development of aggressive prostate cancer (PrCa) is pivotal in developing new therapies. Using a systems biology approach, we interrogated the AR-regulated proteome and identified PDZ binding kinase (PBK) as a novel AR-regulated protein that regulates full-length AR and AR variants (ARVs) activity in PrCa. PBK overexpression in aggressive PrCa is associated with early biochemical relapse and poor clinical outcome. In addition to its carboxy terminus ligand-binding domain, PBK directly interacts with the amino terminus transactivation domain of the AR to stabilise it thereby leading to increased AR protein expression observed in PrCa. Transcriptome sequencing revealed that PBK is a mediator of global AR signalling with key roles in regulating tumour invasion and metastasis. PBK inhibition decreased growth of PrCa cell lines and clinical specimen cultured ex vivo. We uncovered a novel interplay between AR and PBK that results in increased AR and ARVs expression that executes AR-mediated growth and progression of PrCa, with implications for the development of PBK inhibitors for the treatment of aggressive PrCa.
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spelling oxford-uuid:e30effa8-d71a-4ed0-8d3b-4111c1aa1ded2022-03-27T10:06:18ZA reciprocal feedback between the PDZ binding kinase and androgen receptor drives prostate cancerJournal articlehttp://purl.org/coar/resource_type/c_dcae04bcuuid:e30effa8-d71a-4ed0-8d3b-4111c1aa1dedEnglishSymplectic Elements at OxfordSpringer Nature2018Warren, AMassie, CWatt, KLuko, KOrafidiya, FSelth, LMohammed, HChohan, BMenon, SBaridi, AZhao, WEscriu, CPungsrinont, TD'Santos, CYang, XTaylor, CQureshi, AZecchini, VShaw, GDehm, SMills, ICarroll, JTilley, WMcEwan, IBaniahmad, ANeal, DAsim, MElucidation of mechanisms underlying the increased androgen receptor (AR) activity and subsequent development of aggressive prostate cancer (PrCa) is pivotal in developing new therapies. Using a systems biology approach, we interrogated the AR-regulated proteome and identified PDZ binding kinase (PBK) as a novel AR-regulated protein that regulates full-length AR and AR variants (ARVs) activity in PrCa. PBK overexpression in aggressive PrCa is associated with early biochemical relapse and poor clinical outcome. In addition to its carboxy terminus ligand-binding domain, PBK directly interacts with the amino terminus transactivation domain of the AR to stabilise it thereby leading to increased AR protein expression observed in PrCa. Transcriptome sequencing revealed that PBK is a mediator of global AR signalling with key roles in regulating tumour invasion and metastasis. PBK inhibition decreased growth of PrCa cell lines and clinical specimen cultured ex vivo. We uncovered a novel interplay between AR and PBK that results in increased AR and ARVs expression that executes AR-mediated growth and progression of PrCa, with implications for the development of PBK inhibitors for the treatment of aggressive PrCa.
spellingShingle Warren, A
Massie, C
Watt, K
Luko, K
Orafidiya, F
Selth, L
Mohammed, H
Chohan, B
Menon, S
Baridi, A
Zhao, W
Escriu, C
Pungsrinont, T
D'Santos, C
Yang, X
Taylor, C
Qureshi, A
Zecchini, V
Shaw, G
Dehm, S
Mills, I
Carroll, J
Tilley, W
McEwan, I
Baniahmad, A
Neal, D
Asim, M
A reciprocal feedback between the PDZ binding kinase and androgen receptor drives prostate cancer
title A reciprocal feedback between the PDZ binding kinase and androgen receptor drives prostate cancer
title_full A reciprocal feedback between the PDZ binding kinase and androgen receptor drives prostate cancer
title_fullStr A reciprocal feedback between the PDZ binding kinase and androgen receptor drives prostate cancer
title_full_unstemmed A reciprocal feedback between the PDZ binding kinase and androgen receptor drives prostate cancer
title_short A reciprocal feedback between the PDZ binding kinase and androgen receptor drives prostate cancer
title_sort reciprocal feedback between the pdz binding kinase and androgen receptor drives prostate cancer
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