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Bmal1 Regulates Prostate Growth via Cell-Cycle Modulation

The circadian clock system exists in most organs and regulates diverse physiological processes, including growth. Here, we used a prostate-specific Bmal1-knockout mouse model (pBmal1 KO: PbsnCre+; Bmal1(fx/fx)) and immortalized human prostate cells (RWPE-1 and WPMY-1) to elucidate the role of the pe...

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Autores principales: Ueda, Masakatsu, Kono, Jin, Sengiku, Atsushi, Nagumo, Yoshiyuki, Mathis, Bryan J., Shimba, Shigeki, Taketo, Makoto Mark, Kobayashi, Takashi, Ogawa, Osamu, Negoro, Hiromitsu
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9569634/
https://www.ncbi.nlm.nih.gov/pubmed/36232573
http://dx.doi.org/10.3390/ijms231911272
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author Ueda, Masakatsu
Kono, Jin
Sengiku, Atsushi
Nagumo, Yoshiyuki
Mathis, Bryan J.
Shimba, Shigeki
Taketo, Makoto Mark
Kobayashi, Takashi
Ogawa, Osamu
Negoro, Hiromitsu
author_facet Ueda, Masakatsu
Kono, Jin
Sengiku, Atsushi
Nagumo, Yoshiyuki
Mathis, Bryan J.
Shimba, Shigeki
Taketo, Makoto Mark
Kobayashi, Takashi
Ogawa, Osamu
Negoro, Hiromitsu
author_sort Ueda, Masakatsu
collection PubMed
description The circadian clock system exists in most organs and regulates diverse physiological processes, including growth. Here, we used a prostate-specific Bmal1-knockout mouse model (pBmal1 KO: PbsnCre+; Bmal1(fx/fx)) and immortalized human prostate cells (RWPE-1 and WPMY-1) to elucidate the role of the peripheral prostate clock on prostate growth. Bmal1 KO resulted in significantly decreased ventral and dorsolateral lobes with less Ki-67-positive epithelial cells than the controls. Next, the cap analysis of gene expression revealed that genes associated with cell cycles were differentially expressed in the pBmal1 KO prostate. Cdkn1a (coding p21) was diurnally expressed in the control mouse prostate, a rhythm which was disturbed in pBmal1 KO. Meanwhile, the knockdown of BMAL1 in epithelial RWPE-1 and stromal WPMY-1 cell lines decreased proliferation. Furthermore, RWPE-1 BMAL1 knockdown increased G0/G1-phase cell numbers but reduced S-phase numbers. These findings indicate that core clock gene Bmal1 is involved in prostate growth via the modulation of the cell cycle and provide a rationale for further research to link the pathogenesis of benign prostatic hyperplasia or cancer with the circadian clock.
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spelling pubmed-95696342022-10-17 Bmal1 Regulates Prostate Growth via Cell-Cycle Modulation Ueda, Masakatsu Kono, Jin Sengiku, Atsushi Nagumo, Yoshiyuki Mathis, Bryan J. Shimba, Shigeki Taketo, Makoto Mark Kobayashi, Takashi Ogawa, Osamu Negoro, Hiromitsu Int J Mol Sci Article The circadian clock system exists in most organs and regulates diverse physiological processes, including growth. Here, we used a prostate-specific Bmal1-knockout mouse model (pBmal1 KO: PbsnCre+; Bmal1(fx/fx)) and immortalized human prostate cells (RWPE-1 and WPMY-1) to elucidate the role of the peripheral prostate clock on prostate growth. Bmal1 KO resulted in significantly decreased ventral and dorsolateral lobes with less Ki-67-positive epithelial cells than the controls. Next, the cap analysis of gene expression revealed that genes associated with cell cycles were differentially expressed in the pBmal1 KO prostate. Cdkn1a (coding p21) was diurnally expressed in the control mouse prostate, a rhythm which was disturbed in pBmal1 KO. Meanwhile, the knockdown of BMAL1 in epithelial RWPE-1 and stromal WPMY-1 cell lines decreased proliferation. Furthermore, RWPE-1 BMAL1 knockdown increased G0/G1-phase cell numbers but reduced S-phase numbers. These findings indicate that core clock gene Bmal1 is involved in prostate growth via the modulation of the cell cycle and provide a rationale for further research to link the pathogenesis of benign prostatic hyperplasia or cancer with the circadian clock. MDPI 2022-09-24 /pmc/articles/PMC9569634/ /pubmed/36232573 http://dx.doi.org/10.3390/ijms231911272 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Ueda, Masakatsu
Kono, Jin
Sengiku, Atsushi
Nagumo, Yoshiyuki
Mathis, Bryan J.
Shimba, Shigeki
Taketo, Makoto Mark
Kobayashi, Takashi
Ogawa, Osamu
Negoro, Hiromitsu
Bmal1 Regulates Prostate Growth via Cell-Cycle Modulation
title Bmal1 Regulates Prostate Growth via Cell-Cycle Modulation
title_full Bmal1 Regulates Prostate Growth via Cell-Cycle Modulation
title_fullStr Bmal1 Regulates Prostate Growth via Cell-Cycle Modulation
title_full_unstemmed Bmal1 Regulates Prostate Growth via Cell-Cycle Modulation
title_short Bmal1 Regulates Prostate Growth via Cell-Cycle Modulation
title_sort bmal1 regulates prostate growth via cell-cycle modulation
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9569634/
https://www.ncbi.nlm.nih.gov/pubmed/36232573
http://dx.doi.org/10.3390/ijms231911272
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