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Compensatory hepatic adaptation accompanies permanent absence of intrahepatic biliary network due to YAP1 loss in liver progenitors

Yes-associated protein 1 (YAP1) regulates cell plasticity during liver injury, regeneration, and cancer, but its role in liver development is unknown. We detect YAP1 activity in biliary cells and in cells at the hepatobiliary bifur-cation in single-cell RNA sequencing analysis of developing livers....

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Autores principales: Molina, Laura M., Zhu, Junjie, Li, Qin, Pradhan-Sundd, Tirthadipa, Krutsenko, Yekaterina, Sayed, Khaled, Jenkins, Nathaniel, Vats, Ravi, Bhushan, Bharat, Ko, Sungjin, Hu, Shikai, Poddar, Minakshi, Singh, Sucha, Tao, Junyan, Sundd, Prithu, Singhi, Aatur, Watkins, Simon, Ma, Xiaochao, Benos, Panayiotis V., Feranchak, Andrew, Michalopoulos, George, Nejak-Bowen, Kari, Watson, Alan, Bell, Aaron, Monga, Satdarshan P.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8280534/
https://www.ncbi.nlm.nih.gov/pubmed/34233187
http://dx.doi.org/10.1016/j.celrep.2021.109310
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author Molina, Laura M.
Zhu, Junjie
Li, Qin
Pradhan-Sundd, Tirthadipa
Krutsenko, Yekaterina
Sayed, Khaled
Jenkins, Nathaniel
Vats, Ravi
Bhushan, Bharat
Ko, Sungjin
Hu, Shikai
Poddar, Minakshi
Singh, Sucha
Tao, Junyan
Sundd, Prithu
Singhi, Aatur
Watkins, Simon
Ma, Xiaochao
Benos, Panayiotis V.
Feranchak, Andrew
Michalopoulos, George
Nejak-Bowen, Kari
Watson, Alan
Bell, Aaron
Monga, Satdarshan P.
author_facet Molina, Laura M.
Zhu, Junjie
Li, Qin
Pradhan-Sundd, Tirthadipa
Krutsenko, Yekaterina
Sayed, Khaled
Jenkins, Nathaniel
Vats, Ravi
Bhushan, Bharat
Ko, Sungjin
Hu, Shikai
Poddar, Minakshi
Singh, Sucha
Tao, Junyan
Sundd, Prithu
Singhi, Aatur
Watkins, Simon
Ma, Xiaochao
Benos, Panayiotis V.
Feranchak, Andrew
Michalopoulos, George
Nejak-Bowen, Kari
Watson, Alan
Bell, Aaron
Monga, Satdarshan P.
author_sort Molina, Laura M.
collection PubMed
description Yes-associated protein 1 (YAP1) regulates cell plasticity during liver injury, regeneration, and cancer, but its role in liver development is unknown. We detect YAP1 activity in biliary cells and in cells at the hepatobiliary bifur-cation in single-cell RNA sequencing analysis of developing livers. Deletion of Yap1 in hepatoblasts does not impair Notch-driven SOX9+ ductal plate formation but does prevent the formation of the abutting second layer of SOX9+ ductal cells, blocking the formation of a patent intrahepatic biliary tree. Intriguingly, these mice survive for 8 months with severe cholestatic injury and without hepatocyte-to-biliary transdifferentiation. Ductular reaction in the perihilar region suggests extrahepatic biliary proliferation, likely seeking the missing intrahepatic biliary network. Long-term survival of these mice occurs through hepatocyte adaptation via reduced metabolic and synthetic function, including altered bile acid metabolism and transport. Overall, we show YAP1 as a key regulator of bile duct development while highlighting a profound adaptive capability of hepatocytes.
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spelling pubmed-82805342021-07-15 Compensatory hepatic adaptation accompanies permanent absence of intrahepatic biliary network due to YAP1 loss in liver progenitors Molina, Laura M. Zhu, Junjie Li, Qin Pradhan-Sundd, Tirthadipa Krutsenko, Yekaterina Sayed, Khaled Jenkins, Nathaniel Vats, Ravi Bhushan, Bharat Ko, Sungjin Hu, Shikai Poddar, Minakshi Singh, Sucha Tao, Junyan Sundd, Prithu Singhi, Aatur Watkins, Simon Ma, Xiaochao Benos, Panayiotis V. Feranchak, Andrew Michalopoulos, George Nejak-Bowen, Kari Watson, Alan Bell, Aaron Monga, Satdarshan P. Cell Rep Article Yes-associated protein 1 (YAP1) regulates cell plasticity during liver injury, regeneration, and cancer, but its role in liver development is unknown. We detect YAP1 activity in biliary cells and in cells at the hepatobiliary bifur-cation in single-cell RNA sequencing analysis of developing livers. Deletion of Yap1 in hepatoblasts does not impair Notch-driven SOX9+ ductal plate formation but does prevent the formation of the abutting second layer of SOX9+ ductal cells, blocking the formation of a patent intrahepatic biliary tree. Intriguingly, these mice survive for 8 months with severe cholestatic injury and without hepatocyte-to-biliary transdifferentiation. Ductular reaction in the perihilar region suggests extrahepatic biliary proliferation, likely seeking the missing intrahepatic biliary network. Long-term survival of these mice occurs through hepatocyte adaptation via reduced metabolic and synthetic function, including altered bile acid metabolism and transport. Overall, we show YAP1 as a key regulator of bile duct development while highlighting a profound adaptive capability of hepatocytes. 2021-07-06 /pmc/articles/PMC8280534/ /pubmed/34233187 http://dx.doi.org/10.1016/j.celrep.2021.109310 Text en https://creativecommons.org/licenses/by-nc-nd/4.0/This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/ (https://creativecommons.org/licenses/by-nc-nd/4.0/) ).
spellingShingle Article
Molina, Laura M.
Zhu, Junjie
Li, Qin
Pradhan-Sundd, Tirthadipa
Krutsenko, Yekaterina
Sayed, Khaled
Jenkins, Nathaniel
Vats, Ravi
Bhushan, Bharat
Ko, Sungjin
Hu, Shikai
Poddar, Minakshi
Singh, Sucha
Tao, Junyan
Sundd, Prithu
Singhi, Aatur
Watkins, Simon
Ma, Xiaochao
Benos, Panayiotis V.
Feranchak, Andrew
Michalopoulos, George
Nejak-Bowen, Kari
Watson, Alan
Bell, Aaron
Monga, Satdarshan P.
Compensatory hepatic adaptation accompanies permanent absence of intrahepatic biliary network due to YAP1 loss in liver progenitors
title Compensatory hepatic adaptation accompanies permanent absence of intrahepatic biliary network due to YAP1 loss in liver progenitors
title_full Compensatory hepatic adaptation accompanies permanent absence of intrahepatic biliary network due to YAP1 loss in liver progenitors
title_fullStr Compensatory hepatic adaptation accompanies permanent absence of intrahepatic biliary network due to YAP1 loss in liver progenitors
title_full_unstemmed Compensatory hepatic adaptation accompanies permanent absence of intrahepatic biliary network due to YAP1 loss in liver progenitors
title_short Compensatory hepatic adaptation accompanies permanent absence of intrahepatic biliary network due to YAP1 loss in liver progenitors
title_sort compensatory hepatic adaptation accompanies permanent absence of intrahepatic biliary network due to yap1 loss in liver progenitors
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8280534/
https://www.ncbi.nlm.nih.gov/pubmed/34233187
http://dx.doi.org/10.1016/j.celrep.2021.109310
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