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Cullin3 deficiency shapes tumor microenvironment and promotes cholangiocarcinoma in liver-specific Smad4/Pten mutant mice
Cholangiocarcinoma (CC), the most lethal type of liver cancer, remains very difficult to treat due to an incomplete understanding of the cancer initiation and progression mechanisms and no effective therapeutic drugs. Thus, identification of genomic drivers and delineation of the underlying mechanis...
Autores principales: | , , , , , , , , , , , , |
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Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
Ivyspring International Publisher
2021
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Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8579464/ https://www.ncbi.nlm.nih.gov/pubmed/34803491 http://dx.doi.org/10.7150/ijbs.67379 |
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author | Zhao, Ming Quan, Yingyao Zeng, Jianming Lyu, Xueying Wang, Haitao Lei, Josh Haipeng Feng, Yangyang Xu, Jun Chen, Qiang Sun, Heng Xu, Xiaoling Lu, Ligong Deng, Chu-Xia |
author_facet | Zhao, Ming Quan, Yingyao Zeng, Jianming Lyu, Xueying Wang, Haitao Lei, Josh Haipeng Feng, Yangyang Xu, Jun Chen, Qiang Sun, Heng Xu, Xiaoling Lu, Ligong Deng, Chu-Xia |
author_sort | Zhao, Ming |
collection | PubMed |
description | Cholangiocarcinoma (CC), the most lethal type of liver cancer, remains very difficult to treat due to an incomplete understanding of the cancer initiation and progression mechanisms and no effective therapeutic drugs. Thus, identification of genomic drivers and delineation of the underlying mechanisms are urgently needed. Here, we conducted a genome-wide CRISPR-Cas9 screening in liver-specific Smad4/Pten knockout mice (Smad4(co/co);Pten(co/co);Alb-Cre, abbreviated as SPC), and identified 15 putative tumor suppressor genes, including Cullin3 (Cul3), whose deficiency increases protein levels of Nrf2 and Cyclin D1 that accelerate cholangiocytes expansion leading to the initiation of CC. Meanwhile, Cul3 deficiency also increases the secretion of Cxcl9 in stromal cells to attract T cells infiltration, and increases the production of Amphiregulin (Areg) mediated by Nrf2, which paracrinely induces inflammation in the liver, and promotes accumulation of exhausted PD1(high) CD8 T cells at the expenses of their cytotoxic activity, allowing CC progression. We demonstrate that the anti-PD1/PD-L1 blockade inhibits CC growth, and the effect is enhanced by combining with sorafenib selected from organoid mediated drug sensitive test. This model makes it possible to further identify more liver cancer suppressors, study molecular mechanisms, and develop effective therapeutic strategies. |
format | Online Article Text |
id | pubmed-8579464 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2021 |
publisher | Ivyspring International Publisher |
record_format | MEDLINE/PubMed |
spelling | pubmed-85794642021-11-19 Cullin3 deficiency shapes tumor microenvironment and promotes cholangiocarcinoma in liver-specific Smad4/Pten mutant mice Zhao, Ming Quan, Yingyao Zeng, Jianming Lyu, Xueying Wang, Haitao Lei, Josh Haipeng Feng, Yangyang Xu, Jun Chen, Qiang Sun, Heng Xu, Xiaoling Lu, Ligong Deng, Chu-Xia Int J Biol Sci Research Paper Cholangiocarcinoma (CC), the most lethal type of liver cancer, remains very difficult to treat due to an incomplete understanding of the cancer initiation and progression mechanisms and no effective therapeutic drugs. Thus, identification of genomic drivers and delineation of the underlying mechanisms are urgently needed. Here, we conducted a genome-wide CRISPR-Cas9 screening in liver-specific Smad4/Pten knockout mice (Smad4(co/co);Pten(co/co);Alb-Cre, abbreviated as SPC), and identified 15 putative tumor suppressor genes, including Cullin3 (Cul3), whose deficiency increases protein levels of Nrf2 and Cyclin D1 that accelerate cholangiocytes expansion leading to the initiation of CC. Meanwhile, Cul3 deficiency also increases the secretion of Cxcl9 in stromal cells to attract T cells infiltration, and increases the production of Amphiregulin (Areg) mediated by Nrf2, which paracrinely induces inflammation in the liver, and promotes accumulation of exhausted PD1(high) CD8 T cells at the expenses of their cytotoxic activity, allowing CC progression. We demonstrate that the anti-PD1/PD-L1 blockade inhibits CC growth, and the effect is enhanced by combining with sorafenib selected from organoid mediated drug sensitive test. This model makes it possible to further identify more liver cancer suppressors, study molecular mechanisms, and develop effective therapeutic strategies. Ivyspring International Publisher 2021-10-11 /pmc/articles/PMC8579464/ /pubmed/34803491 http://dx.doi.org/10.7150/ijbs.67379 Text en © The author(s) https://creativecommons.org/licenses/by/4.0/This is an open access article distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0/). See http://ivyspring.com/terms for full terms and conditions. |
spellingShingle | Research Paper Zhao, Ming Quan, Yingyao Zeng, Jianming Lyu, Xueying Wang, Haitao Lei, Josh Haipeng Feng, Yangyang Xu, Jun Chen, Qiang Sun, Heng Xu, Xiaoling Lu, Ligong Deng, Chu-Xia Cullin3 deficiency shapes tumor microenvironment and promotes cholangiocarcinoma in liver-specific Smad4/Pten mutant mice |
title | Cullin3 deficiency shapes tumor microenvironment and promotes cholangiocarcinoma in liver-specific Smad4/Pten mutant mice |
title_full | Cullin3 deficiency shapes tumor microenvironment and promotes cholangiocarcinoma in liver-specific Smad4/Pten mutant mice |
title_fullStr | Cullin3 deficiency shapes tumor microenvironment and promotes cholangiocarcinoma in liver-specific Smad4/Pten mutant mice |
title_full_unstemmed | Cullin3 deficiency shapes tumor microenvironment and promotes cholangiocarcinoma in liver-specific Smad4/Pten mutant mice |
title_short | Cullin3 deficiency shapes tumor microenvironment and promotes cholangiocarcinoma in liver-specific Smad4/Pten mutant mice |
title_sort | cullin3 deficiency shapes tumor microenvironment and promotes cholangiocarcinoma in liver-specific smad4/pten mutant mice |
topic | Research Paper |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8579464/ https://www.ncbi.nlm.nih.gov/pubmed/34803491 http://dx.doi.org/10.7150/ijbs.67379 |
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