Cargando…

YY2‐DRP1 Axis Regulates Mitochondrial Fission and Determines Cancer Stem Cell Asymmetric Division

Cancer stem cells (CSCs) are associated with tumor progression, recurrence, and therapeutic resistance. To maintain their pool while promoting tumorigenesis, CSCs divide asymmetrically, producing a CSC and a highly proliferative, more differentiated transit‐amplifying cell. Exhausting the CSC pool h...

Descripción completa

Detalles Bibliográficos
Autores principales: Wei, Mankun, Nurjanah, Uli, Li, Juan, Luo, Xinxin, Hosea, Rendy, Li, Yanjun, Zeng, Jianting, Duan, Wei, Song, Guanbin, Miyagishi, Makoto, Kasim, Vivi, Wu, Shourong
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10427375/
https://www.ncbi.nlm.nih.gov/pubmed/37300334
http://dx.doi.org/10.1002/advs.202207349
_version_ 1785090223936372736
author Wei, Mankun
Nurjanah, Uli
Li, Juan
Luo, Xinxin
Hosea, Rendy
Li, Yanjun
Zeng, Jianting
Duan, Wei
Song, Guanbin
Miyagishi, Makoto
Kasim, Vivi
Wu, Shourong
author_facet Wei, Mankun
Nurjanah, Uli
Li, Juan
Luo, Xinxin
Hosea, Rendy
Li, Yanjun
Zeng, Jianting
Duan, Wei
Song, Guanbin
Miyagishi, Makoto
Kasim, Vivi
Wu, Shourong
author_sort Wei, Mankun
collection PubMed
description Cancer stem cells (CSCs) are associated with tumor progression, recurrence, and therapeutic resistance. To maintain their pool while promoting tumorigenesis, CSCs divide asymmetrically, producing a CSC and a highly proliferative, more differentiated transit‐amplifying cell. Exhausting the CSC pool has been proposed as an effective antitumor strategy; however, the mechanism underlying CSC division remains poorly understood, thereby largely limiting its clinical application. Here, through cross‐omics analysis, yin yang 2 (YY2) is identified as a novel negative regulator of CSC maintenance. It is shown that YY2 is downregulated in stem‐like tumor spheres formed by hepatocarcinoma cells and in liver cancer, in which its expression is negatively correlated with disease progression and poor prognosis. Furthermore, it is revealed that YY2 overexpression suppressed liver CSC asymmetric division, leading to depletion of the CSC pool and decreased tumor‐initiating capacity. Meanwhile, YY2 knock‐out in stem‐like tumor spheres caused enrichment in mitochondrial functions. Mechanistically, it is revealed that YY2 impaired mitochondrial fission, and consequently, liver CSC asymmetric division, by suppressing the transcription of dynamin‐related protein 1. These results unravel a novel regulatory mechanism of mitochondrial dynamic‐mediated CSCs asymmetric division and highlight the role of YY2 as a tumor suppressor and a therapeutic target in antitumor treatment.
format Online
Article
Text
id pubmed-10427375
institution National Center for Biotechnology Information
language English
publishDate 2023
publisher John Wiley and Sons Inc.
record_format MEDLINE/PubMed
spelling pubmed-104273752023-08-17 YY2‐DRP1 Axis Regulates Mitochondrial Fission and Determines Cancer Stem Cell Asymmetric Division Wei, Mankun Nurjanah, Uli Li, Juan Luo, Xinxin Hosea, Rendy Li, Yanjun Zeng, Jianting Duan, Wei Song, Guanbin Miyagishi, Makoto Kasim, Vivi Wu, Shourong Adv Sci (Weinh) Research Articles Cancer stem cells (CSCs) are associated with tumor progression, recurrence, and therapeutic resistance. To maintain their pool while promoting tumorigenesis, CSCs divide asymmetrically, producing a CSC and a highly proliferative, more differentiated transit‐amplifying cell. Exhausting the CSC pool has been proposed as an effective antitumor strategy; however, the mechanism underlying CSC division remains poorly understood, thereby largely limiting its clinical application. Here, through cross‐omics analysis, yin yang 2 (YY2) is identified as a novel negative regulator of CSC maintenance. It is shown that YY2 is downregulated in stem‐like tumor spheres formed by hepatocarcinoma cells and in liver cancer, in which its expression is negatively correlated with disease progression and poor prognosis. Furthermore, it is revealed that YY2 overexpression suppressed liver CSC asymmetric division, leading to depletion of the CSC pool and decreased tumor‐initiating capacity. Meanwhile, YY2 knock‐out in stem‐like tumor spheres caused enrichment in mitochondrial functions. Mechanistically, it is revealed that YY2 impaired mitochondrial fission, and consequently, liver CSC asymmetric division, by suppressing the transcription of dynamin‐related protein 1. These results unravel a novel regulatory mechanism of mitochondrial dynamic‐mediated CSCs asymmetric division and highlight the role of YY2 as a tumor suppressor and a therapeutic target in antitumor treatment. John Wiley and Sons Inc. 2023-06-09 /pmc/articles/PMC10427375/ /pubmed/37300334 http://dx.doi.org/10.1002/advs.202207349 Text en © 2023 The Authors. Advanced Science published by Wiley‐VCH GmbH https://creativecommons.org/licenses/by/4.0/This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Articles
Wei, Mankun
Nurjanah, Uli
Li, Juan
Luo, Xinxin
Hosea, Rendy
Li, Yanjun
Zeng, Jianting
Duan, Wei
Song, Guanbin
Miyagishi, Makoto
Kasim, Vivi
Wu, Shourong
YY2‐DRP1 Axis Regulates Mitochondrial Fission and Determines Cancer Stem Cell Asymmetric Division
title YY2‐DRP1 Axis Regulates Mitochondrial Fission and Determines Cancer Stem Cell Asymmetric Division
title_full YY2‐DRP1 Axis Regulates Mitochondrial Fission and Determines Cancer Stem Cell Asymmetric Division
title_fullStr YY2‐DRP1 Axis Regulates Mitochondrial Fission and Determines Cancer Stem Cell Asymmetric Division
title_full_unstemmed YY2‐DRP1 Axis Regulates Mitochondrial Fission and Determines Cancer Stem Cell Asymmetric Division
title_short YY2‐DRP1 Axis Regulates Mitochondrial Fission and Determines Cancer Stem Cell Asymmetric Division
title_sort yy2‐drp1 axis regulates mitochondrial fission and determines cancer stem cell asymmetric division
topic Research Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10427375/
https://www.ncbi.nlm.nih.gov/pubmed/37300334
http://dx.doi.org/10.1002/advs.202207349
work_keys_str_mv AT weimankun yy2drp1axisregulatesmitochondrialfissionanddeterminescancerstemcellasymmetricdivision
AT nurjanahuli yy2drp1axisregulatesmitochondrialfissionanddeterminescancerstemcellasymmetricdivision
AT lijuan yy2drp1axisregulatesmitochondrialfissionanddeterminescancerstemcellasymmetricdivision
AT luoxinxin yy2drp1axisregulatesmitochondrialfissionanddeterminescancerstemcellasymmetricdivision
AT hosearendy yy2drp1axisregulatesmitochondrialfissionanddeterminescancerstemcellasymmetricdivision
AT liyanjun yy2drp1axisregulatesmitochondrialfissionanddeterminescancerstemcellasymmetricdivision
AT zengjianting yy2drp1axisregulatesmitochondrialfissionanddeterminescancerstemcellasymmetricdivision
AT duanwei yy2drp1axisregulatesmitochondrialfissionanddeterminescancerstemcellasymmetricdivision
AT songguanbin yy2drp1axisregulatesmitochondrialfissionanddeterminescancerstemcellasymmetricdivision
AT miyagishimakoto yy2drp1axisregulatesmitochondrialfissionanddeterminescancerstemcellasymmetricdivision
AT kasimvivi yy2drp1axisregulatesmitochondrialfissionanddeterminescancerstemcellasymmetricdivision
AT wushourong yy2drp1axisregulatesmitochondrialfissionanddeterminescancerstemcellasymmetricdivision