Cargando…

Discovery of a Novel Aminocyclopropenone Compound That Inhibits BRD4-Driven Nucleoporin NUP210 Expression and Attenuates Colorectal Cancer Growth

Epigenetic deregulation plays an essential role in colorectal cancer progression. Bromodomains are epigenetic “readers” of histone acetylation. Bromodomain-containing protein 4 (BRD4) plays a pivotal role in transcriptional regulation and is a feasible drug target in cancer cells. Disease-specific e...

Descripción completa

Detalles Bibliográficos
Autores principales: Kondo, Hiroya, Mishiro, Kenji, Iwashima, Yuki, Qiu, Yujia, Kobayashi, Akiko, Lim, Keesiang, Domoto, Takahiro, Minamoto, Toshinari, Ogawa, Kazuma, Kunishima, Munetaka, Hazawa, Masaharu, Wong, Richard W.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8833887/
https://www.ncbi.nlm.nih.gov/pubmed/35159127
http://dx.doi.org/10.3390/cells11030317
_version_ 1784649046894313472
author Kondo, Hiroya
Mishiro, Kenji
Iwashima, Yuki
Qiu, Yujia
Kobayashi, Akiko
Lim, Keesiang
Domoto, Takahiro
Minamoto, Toshinari
Ogawa, Kazuma
Kunishima, Munetaka
Hazawa, Masaharu
Wong, Richard W.
author_facet Kondo, Hiroya
Mishiro, Kenji
Iwashima, Yuki
Qiu, Yujia
Kobayashi, Akiko
Lim, Keesiang
Domoto, Takahiro
Minamoto, Toshinari
Ogawa, Kazuma
Kunishima, Munetaka
Hazawa, Masaharu
Wong, Richard W.
author_sort Kondo, Hiroya
collection PubMed
description Epigenetic deregulation plays an essential role in colorectal cancer progression. Bromodomains are epigenetic “readers” of histone acetylation. Bromodomain-containing protein 4 (BRD4) plays a pivotal role in transcriptional regulation and is a feasible drug target in cancer cells. Disease-specific elevation of nucleoporin, a component of the nuclear pore complex (NPC), is a determinant of cancer malignancy, but BRD4-driven changes of NPC composition remain poorly understood. Here, we developed novel aminocyclopropenones and investigated their biological effects on cancer cell growth and BRD4 functions. Among 21 compounds developed here, we identified aminocyclopropenone 1n (ACP-1n) with the strongest inhibitory effects on the growth of the cancer cell line HCT116. ACP-1n blocked BRD4 functions by preventing its phase separation ability both in vitro and in vivo, attenuating the expression levels of BRD4-driven MYC. Notably, ACP-1n significantly reduced the nuclear size with concomitant suppression of the level of the NPC protein nucleoporin NUP210. Furthermore, NUP210 is in a BRD4-dependent manner and silencing of NUP210 was sufficient to decrease nucleus size and cellular growth. In conclusion, our findings highlighted an aminocyclopropenone compound as a novel therapeutic drug blocking BRD4 assembly, thereby preventing BRD4-driven oncogenic functions in cancer cells. This study facilitates the development of the next generation of effective and potent inhibitors of epigenetic bromodomains and extra-terminal (BET) protein family.
format Online
Article
Text
id pubmed-8833887
institution National Center for Biotechnology Information
language English
publishDate 2022
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-88338872022-02-12 Discovery of a Novel Aminocyclopropenone Compound That Inhibits BRD4-Driven Nucleoporin NUP210 Expression and Attenuates Colorectal Cancer Growth Kondo, Hiroya Mishiro, Kenji Iwashima, Yuki Qiu, Yujia Kobayashi, Akiko Lim, Keesiang Domoto, Takahiro Minamoto, Toshinari Ogawa, Kazuma Kunishima, Munetaka Hazawa, Masaharu Wong, Richard W. Cells Article Epigenetic deregulation plays an essential role in colorectal cancer progression. Bromodomains are epigenetic “readers” of histone acetylation. Bromodomain-containing protein 4 (BRD4) plays a pivotal role in transcriptional regulation and is a feasible drug target in cancer cells. Disease-specific elevation of nucleoporin, a component of the nuclear pore complex (NPC), is a determinant of cancer malignancy, but BRD4-driven changes of NPC composition remain poorly understood. Here, we developed novel aminocyclopropenones and investigated their biological effects on cancer cell growth and BRD4 functions. Among 21 compounds developed here, we identified aminocyclopropenone 1n (ACP-1n) with the strongest inhibitory effects on the growth of the cancer cell line HCT116. ACP-1n blocked BRD4 functions by preventing its phase separation ability both in vitro and in vivo, attenuating the expression levels of BRD4-driven MYC. Notably, ACP-1n significantly reduced the nuclear size with concomitant suppression of the level of the NPC protein nucleoporin NUP210. Furthermore, NUP210 is in a BRD4-dependent manner and silencing of NUP210 was sufficient to decrease nucleus size and cellular growth. In conclusion, our findings highlighted an aminocyclopropenone compound as a novel therapeutic drug blocking BRD4 assembly, thereby preventing BRD4-driven oncogenic functions in cancer cells. This study facilitates the development of the next generation of effective and potent inhibitors of epigenetic bromodomains and extra-terminal (BET) protein family. MDPI 2022-01-18 /pmc/articles/PMC8833887/ /pubmed/35159127 http://dx.doi.org/10.3390/cells11030317 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
Kondo, Hiroya
Mishiro, Kenji
Iwashima, Yuki
Qiu, Yujia
Kobayashi, Akiko
Lim, Keesiang
Domoto, Takahiro
Minamoto, Toshinari
Ogawa, Kazuma
Kunishima, Munetaka
Hazawa, Masaharu
Wong, Richard W.
Discovery of a Novel Aminocyclopropenone Compound That Inhibits BRD4-Driven Nucleoporin NUP210 Expression and Attenuates Colorectal Cancer Growth
title Discovery of a Novel Aminocyclopropenone Compound That Inhibits BRD4-Driven Nucleoporin NUP210 Expression and Attenuates Colorectal Cancer Growth
title_full Discovery of a Novel Aminocyclopropenone Compound That Inhibits BRD4-Driven Nucleoporin NUP210 Expression and Attenuates Colorectal Cancer Growth
title_fullStr Discovery of a Novel Aminocyclopropenone Compound That Inhibits BRD4-Driven Nucleoporin NUP210 Expression and Attenuates Colorectal Cancer Growth
title_full_unstemmed Discovery of a Novel Aminocyclopropenone Compound That Inhibits BRD4-Driven Nucleoporin NUP210 Expression and Attenuates Colorectal Cancer Growth
title_short Discovery of a Novel Aminocyclopropenone Compound That Inhibits BRD4-Driven Nucleoporin NUP210 Expression and Attenuates Colorectal Cancer Growth
title_sort discovery of a novel aminocyclopropenone compound that inhibits brd4-driven nucleoporin nup210 expression and attenuates colorectal cancer growth
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8833887/
https://www.ncbi.nlm.nih.gov/pubmed/35159127
http://dx.doi.org/10.3390/cells11030317
work_keys_str_mv AT kondohiroya discoveryofanovelaminocyclopropenonecompoundthatinhibitsbrd4drivennucleoporinnup210expressionandattenuatescolorectalcancergrowth
AT mishirokenji discoveryofanovelaminocyclopropenonecompoundthatinhibitsbrd4drivennucleoporinnup210expressionandattenuatescolorectalcancergrowth
AT iwashimayuki discoveryofanovelaminocyclopropenonecompoundthatinhibitsbrd4drivennucleoporinnup210expressionandattenuatescolorectalcancergrowth
AT qiuyujia discoveryofanovelaminocyclopropenonecompoundthatinhibitsbrd4drivennucleoporinnup210expressionandattenuatescolorectalcancergrowth
AT kobayashiakiko discoveryofanovelaminocyclopropenonecompoundthatinhibitsbrd4drivennucleoporinnup210expressionandattenuatescolorectalcancergrowth
AT limkeesiang discoveryofanovelaminocyclopropenonecompoundthatinhibitsbrd4drivennucleoporinnup210expressionandattenuatescolorectalcancergrowth
AT domototakahiro discoveryofanovelaminocyclopropenonecompoundthatinhibitsbrd4drivennucleoporinnup210expressionandattenuatescolorectalcancergrowth
AT minamototoshinari discoveryofanovelaminocyclopropenonecompoundthatinhibitsbrd4drivennucleoporinnup210expressionandattenuatescolorectalcancergrowth
AT ogawakazuma discoveryofanovelaminocyclopropenonecompoundthatinhibitsbrd4drivennucleoporinnup210expressionandattenuatescolorectalcancergrowth
AT kunishimamunetaka discoveryofanovelaminocyclopropenonecompoundthatinhibitsbrd4drivennucleoporinnup210expressionandattenuatescolorectalcancergrowth
AT hazawamasaharu discoveryofanovelaminocyclopropenonecompoundthatinhibitsbrd4drivennucleoporinnup210expressionandattenuatescolorectalcancergrowth
AT wongrichardw discoveryofanovelaminocyclopropenonecompoundthatinhibitsbrd4drivennucleoporinnup210expressionandattenuatescolorectalcancergrowth