Cargando…

HSF1 Stimulates Glutamine Transport by Super-Enhancer-Driven lncRNA LINC00857 in Colorectal Cancer

SIMPLE SUMMARY: Based on the latest research, cancer cells prefer glutamine to glucose. Therefore, it is more worthwhile to explore the regulatory mechanism of glutamine metabolism in cancer cells. Super enhancers are critical for the gene transcriptional programs responsible for cell fate by intera...

Descripción completa

Detalles Bibliográficos
Autores principales: Shen, Qi, Wang, Rui, Liu, Xinling, Song, Ping, Zheng, Mingzhu, Ren, Xiaomin, Ma, Jingang, Lu, Zhong, Li, Jiaqiu
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9406190/
https://www.ncbi.nlm.nih.gov/pubmed/36010849
http://dx.doi.org/10.3390/cancers14163855
_version_ 1784774061889421312
author Shen, Qi
Wang, Rui
Liu, Xinling
Song, Ping
Zheng, Mingzhu
Ren, Xiaomin
Ma, Jingang
Lu, Zhong
Li, Jiaqiu
author_facet Shen, Qi
Wang, Rui
Liu, Xinling
Song, Ping
Zheng, Mingzhu
Ren, Xiaomin
Ma, Jingang
Lu, Zhong
Li, Jiaqiu
author_sort Shen, Qi
collection PubMed
description SIMPLE SUMMARY: Based on the latest research, cancer cells prefer glutamine to glucose. Therefore, it is more worthwhile to explore the regulatory mechanism of glutamine metabolism in cancer cells. Super enhancers are critical for the gene transcriptional programs responsible for cell fate by interacting with various transcription factors. The transcription factor HSF1 exerts a multifaced role in tumorigenesis. However, the relevance of HSF1 to super enhancers in tumors remains obscure. Therefore, this study focused on the mechanism underlying super-enhancer activation and its relationship to HSF1 in CRC. Here, we performed a super-enhancer landscape in CRC and we screened out an HSF1-mediated super enhancer, lncRNA-LINC00857, by lncRNA microarray. We discovered that HSF1 could stimulate acetyltransferase P300-mediated super-enhancer activity to facilitate LINC00857 expression, contributing to SLC1A5/ASCT2-mediated glutamine transport. In addition, we validated that targeting the HSF1/LINC00857/ANXA11 axis may provide a valuable therapeutic strategy against CRC. ABSTRACT: Super enhancers are critical for the gene transcription responsible for cell fate by interacting with transcription factors. However, the relevance of HSF1 to super enhancers in tumors remains obscure. We profiled H3K27ac enrichment by chromatin immunoprecipitation sequencing. HSF1-mediated lncRNAs were identified by lncRNA microarray. The characteristics of LINC00857 were explored by in vitro and in vivo assays. The mechanism was studied via chromatin immunoprecipitation, RNA immunoprecipitation, and HSF1/ANXA11 knockout mice. We found that super enhancers occupied multiple gene loci in colorectal cancer. We screened out an HSF1-mediated super enhancer, lncRNA-LINC00857, which exerts its characteristics in promoting cell growth via regulating glutamine metabolism. Notably, HSF1 could stimulate the super-enhancer activity of LINC00857 by the enrichment of acetyltransferase P300 to its gene loci, contributing to LINC00857 transcription. In turn, nuclear LINC00857 cooperated with HSF1 to promote ANXA11 transcription, which modulated SLC1A5/ASCT2 protein expression by binding competitively to miR-122-5p. The knockout of ANXA11 attenuated colorectal cancer formation in vivo. Collectively, we shed light on a closely cooperative machinery between HSF1 and super enhancers. HSF1 could stimulate acetyltransferase P300-mediated super-enhancer activity to facilitate LINC00857 expression, contributing to SLC1A5-mediated glutamine transport. Targeting the HSF1/LINC00857/ANXA11 axis may provide a valuable therapeutic strategy against colorectal cancer.
format Online
Article
Text
id pubmed-9406190
institution National Center for Biotechnology Information
language English
publishDate 2022
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-94061902022-08-26 HSF1 Stimulates Glutamine Transport by Super-Enhancer-Driven lncRNA LINC00857 in Colorectal Cancer Shen, Qi Wang, Rui Liu, Xinling Song, Ping Zheng, Mingzhu Ren, Xiaomin Ma, Jingang Lu, Zhong Li, Jiaqiu Cancers (Basel) Article SIMPLE SUMMARY: Based on the latest research, cancer cells prefer glutamine to glucose. Therefore, it is more worthwhile to explore the regulatory mechanism of glutamine metabolism in cancer cells. Super enhancers are critical for the gene transcriptional programs responsible for cell fate by interacting with various transcription factors. The transcription factor HSF1 exerts a multifaced role in tumorigenesis. However, the relevance of HSF1 to super enhancers in tumors remains obscure. Therefore, this study focused on the mechanism underlying super-enhancer activation and its relationship to HSF1 in CRC. Here, we performed a super-enhancer landscape in CRC and we screened out an HSF1-mediated super enhancer, lncRNA-LINC00857, by lncRNA microarray. We discovered that HSF1 could stimulate acetyltransferase P300-mediated super-enhancer activity to facilitate LINC00857 expression, contributing to SLC1A5/ASCT2-mediated glutamine transport. In addition, we validated that targeting the HSF1/LINC00857/ANXA11 axis may provide a valuable therapeutic strategy against CRC. ABSTRACT: Super enhancers are critical for the gene transcription responsible for cell fate by interacting with transcription factors. However, the relevance of HSF1 to super enhancers in tumors remains obscure. We profiled H3K27ac enrichment by chromatin immunoprecipitation sequencing. HSF1-mediated lncRNAs were identified by lncRNA microarray. The characteristics of LINC00857 were explored by in vitro and in vivo assays. The mechanism was studied via chromatin immunoprecipitation, RNA immunoprecipitation, and HSF1/ANXA11 knockout mice. We found that super enhancers occupied multiple gene loci in colorectal cancer. We screened out an HSF1-mediated super enhancer, lncRNA-LINC00857, which exerts its characteristics in promoting cell growth via regulating glutamine metabolism. Notably, HSF1 could stimulate the super-enhancer activity of LINC00857 by the enrichment of acetyltransferase P300 to its gene loci, contributing to LINC00857 transcription. In turn, nuclear LINC00857 cooperated with HSF1 to promote ANXA11 transcription, which modulated SLC1A5/ASCT2 protein expression by binding competitively to miR-122-5p. The knockout of ANXA11 attenuated colorectal cancer formation in vivo. Collectively, we shed light on a closely cooperative machinery between HSF1 and super enhancers. HSF1 could stimulate acetyltransferase P300-mediated super-enhancer activity to facilitate LINC00857 expression, contributing to SLC1A5-mediated glutamine transport. Targeting the HSF1/LINC00857/ANXA11 axis may provide a valuable therapeutic strategy against colorectal cancer. MDPI 2022-08-09 /pmc/articles/PMC9406190/ /pubmed/36010849 http://dx.doi.org/10.3390/cancers14163855 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
Shen, Qi
Wang, Rui
Liu, Xinling
Song, Ping
Zheng, Mingzhu
Ren, Xiaomin
Ma, Jingang
Lu, Zhong
Li, Jiaqiu
HSF1 Stimulates Glutamine Transport by Super-Enhancer-Driven lncRNA LINC00857 in Colorectal Cancer
title HSF1 Stimulates Glutamine Transport by Super-Enhancer-Driven lncRNA LINC00857 in Colorectal Cancer
title_full HSF1 Stimulates Glutamine Transport by Super-Enhancer-Driven lncRNA LINC00857 in Colorectal Cancer
title_fullStr HSF1 Stimulates Glutamine Transport by Super-Enhancer-Driven lncRNA LINC00857 in Colorectal Cancer
title_full_unstemmed HSF1 Stimulates Glutamine Transport by Super-Enhancer-Driven lncRNA LINC00857 in Colorectal Cancer
title_short HSF1 Stimulates Glutamine Transport by Super-Enhancer-Driven lncRNA LINC00857 in Colorectal Cancer
title_sort hsf1 stimulates glutamine transport by super-enhancer-driven lncrna linc00857 in colorectal cancer
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9406190/
https://www.ncbi.nlm.nih.gov/pubmed/36010849
http://dx.doi.org/10.3390/cancers14163855
work_keys_str_mv AT shenqi hsf1stimulatesglutaminetransportbysuperenhancerdrivenlncrnalinc00857incolorectalcancer
AT wangrui hsf1stimulatesglutaminetransportbysuperenhancerdrivenlncrnalinc00857incolorectalcancer
AT liuxinling hsf1stimulatesglutaminetransportbysuperenhancerdrivenlncrnalinc00857incolorectalcancer
AT songping hsf1stimulatesglutaminetransportbysuperenhancerdrivenlncrnalinc00857incolorectalcancer
AT zhengmingzhu hsf1stimulatesglutaminetransportbysuperenhancerdrivenlncrnalinc00857incolorectalcancer
AT renxiaomin hsf1stimulatesglutaminetransportbysuperenhancerdrivenlncrnalinc00857incolorectalcancer
AT majingang hsf1stimulatesglutaminetransportbysuperenhancerdrivenlncrnalinc00857incolorectalcancer
AT luzhong hsf1stimulatesglutaminetransportbysuperenhancerdrivenlncrnalinc00857incolorectalcancer
AT lijiaqiu hsf1stimulatesglutaminetransportbysuperenhancerdrivenlncrnalinc00857incolorectalcancer