Literature DB >> 32634370

Core regulatory circuitries in defining cancer cell identity across the malignant spectrum.

Leila Jahangiri1,2, Loukia Tsaprouni1, Ricky M Trigg2,3, John A Williams4,5,6, Georgios V Gkoutos4,5,7,8,9,10, Suzanne D Turner2, Joao Pereira11.   

Abstract

Gene expression programmes driving cell identity are established by tightly regulated transcription factors that auto- and cross-regulate in a feed-forward manner, forming core regulatory circuitries (CRCs). CRC transcription factors create and engage super-enhancers by recruiting acetylation writers depositing permissive H3K27ac chromatin marks. These super-enhancers are largely associated with BET proteins, including BRD4, that influence higher-order chromatin structure. The orchestration of these events triggers accessibility of RNA polymerase machinery and the imposition of lineage-specific gene expression. In cancers, CRCs drive cell identity by superimposing developmental programmes on a background of genetic alterations. Further, the establishment and maintenance of oncogenic states are reliant on CRCs that drive factors involved in tumour development. Hence, the molecular dissection of CRC components driving cell identity and cancer state can contribute to elucidating mechanisms of diversion from pre-determined developmental programmes and highlight cancer dependencies. These insights can provide valuable opportunities for identifying and re-purposing drug targets. In this article, we review the current understanding of CRCs across solid and liquid malignancies and avenues of investigation for drug development efforts. We also review techniques used to understand CRCs and elaborate the indication of discussed CRC transcription factors in the wider context of cancer CRC models.

Entities:  

Keywords:  cell identity; core regulatory circuitry; liquid and solid cancers; super-enhancers

Year:  2020        PMID: 32634370     DOI: 10.1098/rsob.200121

Source DB:  PubMed          Journal:  Open Biol        ISSN: 2046-2441            Impact factor:   6.411


  2 in total

1.  Deep analysis of neuroblastoma core regulatory circuitries using online databases and integrated bioinformatics shows their pan-cancer roles as prognostic predictors.

Authors:  Leila Jahangiri; Perla Pucci; Tala Ishola; Joao Pereira; Megan L Cavanagh; Suzanne D Turner
Journal:  Discov Oncol       Date:  2021-11-29

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

Authors:  Hiroya Kondo; Kenji Mishiro; Yuki Iwashima; Yujia Qiu; Akiko Kobayashi; Keesiang Lim; Takahiro Domoto; Toshinari Minamoto; Kazuma Ogawa; Munetaka Kunishima; Masaharu Hazawa; Richard W Wong
Journal:  Cells       Date:  2022-01-18       Impact factor: 6.600

  2 in total

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