Cargando…

Differential Kat3 Usage Orchestrates the Integration of Cellular Metabolism with Differentiation

SIMPLE SUMMARY: The coupling of metabolism with cellular status is critically important and highly evolutionarily conserved. However, how cells coordinate metabolism with transcription as they change their status is not clear. Utilizing multiomic and functional studies, we now demonstrate the dichot...

Descripción completa

Detalles Bibliográficos
Autores principales: Hu, Xiaohui, Ono, Masaya, Chimge, Nyam-Osor, Chosa, Keisuke, Nguyen, Cu, Melendez, Elizabeth, Lou, Chih-Hong, Lim, Punnajit, Termini, John, Lai, Keane K. Y., Fueger, Patrick T., Teo, Jia-Ling, Higuchi, Yusuke, Kahn, Michael
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8656857/
https://www.ncbi.nlm.nih.gov/pubmed/34884992
http://dx.doi.org/10.3390/cancers13235884
_version_ 1784612382422597632
author Hu, Xiaohui
Ono, Masaya
Chimge, Nyam-Osor
Chosa, Keisuke
Nguyen, Cu
Melendez, Elizabeth
Lou, Chih-Hong
Lim, Punnajit
Termini, John
Lai, Keane K. Y.
Fueger, Patrick T.
Teo, Jia-Ling
Higuchi, Yusuke
Kahn, Michael
author_facet Hu, Xiaohui
Ono, Masaya
Chimge, Nyam-Osor
Chosa, Keisuke
Nguyen, Cu
Melendez, Elizabeth
Lou, Chih-Hong
Lim, Punnajit
Termini, John
Lai, Keane K. Y.
Fueger, Patrick T.
Teo, Jia-Ling
Higuchi, Yusuke
Kahn, Michael
author_sort Hu, Xiaohui
collection PubMed
description SIMPLE SUMMARY: The coupling of metabolism with cellular status is critically important and highly evolutionarily conserved. However, how cells coordinate metabolism with transcription as they change their status is not clear. Utilizing multiomic and functional studies, we now demonstrate the dichotomous roles of the Kat3 coactivators CBP and p300 and, in particular, their extreme N-termini, in coordinating cellular metabolism with cell differentiation. Using multiple in vitro and in vivo systems, our study sheds new light on metabolic regulation in homeostasis and disease, including cancer. ABSTRACT: The integration of cellular status with metabolism is critically important and the coupling of energy production and cellular function is highly evolutionarily conserved. This has been demonstrated in stem cell biology, organismal, cellular and tissue differentiation and in immune cell biology. However, a molecular mechanism delineating how cells coordinate and couple metabolism with transcription as they navigate quiescence, growth, proliferation, differentiation and migration remains in its infancy. The extreme N-termini of the Kat3 coactivator family members, CBP and p300, by far the least homologous regions with only 66% identity, interact with members of the nuclear receptor family, interferon activated Stat1 and transcriptionally competent β-catenin, a critical component of the Wnt signaling pathway. We now wish to report based on multiomic and functional investigations, utilizing p300 knockdown, N-terminal p300 edited and p300 S89A edited cell lines and p300 S89A knockin mice, that the N-termini of the Kat3 coactivators provide a highly evolutionarily conserved hub to integrate multiple signaling cascades to coordinate cellular metabolism with the regulation of cellular status and function.
format Online
Article
Text
id pubmed-8656857
institution National Center for Biotechnology Information
language English
publishDate 2021
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-86568572021-12-10 Differential Kat3 Usage Orchestrates the Integration of Cellular Metabolism with Differentiation Hu, Xiaohui Ono, Masaya Chimge, Nyam-Osor Chosa, Keisuke Nguyen, Cu Melendez, Elizabeth Lou, Chih-Hong Lim, Punnajit Termini, John Lai, Keane K. Y. Fueger, Patrick T. Teo, Jia-Ling Higuchi, Yusuke Kahn, Michael Cancers (Basel) Article SIMPLE SUMMARY: The coupling of metabolism with cellular status is critically important and highly evolutionarily conserved. However, how cells coordinate metabolism with transcription as they change their status is not clear. Utilizing multiomic and functional studies, we now demonstrate the dichotomous roles of the Kat3 coactivators CBP and p300 and, in particular, their extreme N-termini, in coordinating cellular metabolism with cell differentiation. Using multiple in vitro and in vivo systems, our study sheds new light on metabolic regulation in homeostasis and disease, including cancer. ABSTRACT: The integration of cellular status with metabolism is critically important and the coupling of energy production and cellular function is highly evolutionarily conserved. This has been demonstrated in stem cell biology, organismal, cellular and tissue differentiation and in immune cell biology. However, a molecular mechanism delineating how cells coordinate and couple metabolism with transcription as they navigate quiescence, growth, proliferation, differentiation and migration remains in its infancy. The extreme N-termini of the Kat3 coactivator family members, CBP and p300, by far the least homologous regions with only 66% identity, interact with members of the nuclear receptor family, interferon activated Stat1 and transcriptionally competent β-catenin, a critical component of the Wnt signaling pathway. We now wish to report based on multiomic and functional investigations, utilizing p300 knockdown, N-terminal p300 edited and p300 S89A edited cell lines and p300 S89A knockin mice, that the N-termini of the Kat3 coactivators provide a highly evolutionarily conserved hub to integrate multiple signaling cascades to coordinate cellular metabolism with the regulation of cellular status and function. MDPI 2021-11-23 /pmc/articles/PMC8656857/ /pubmed/34884992 http://dx.doi.org/10.3390/cancers13235884 Text en © 2021 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
Hu, Xiaohui
Ono, Masaya
Chimge, Nyam-Osor
Chosa, Keisuke
Nguyen, Cu
Melendez, Elizabeth
Lou, Chih-Hong
Lim, Punnajit
Termini, John
Lai, Keane K. Y.
Fueger, Patrick T.
Teo, Jia-Ling
Higuchi, Yusuke
Kahn, Michael
Differential Kat3 Usage Orchestrates the Integration of Cellular Metabolism with Differentiation
title Differential Kat3 Usage Orchestrates the Integration of Cellular Metabolism with Differentiation
title_full Differential Kat3 Usage Orchestrates the Integration of Cellular Metabolism with Differentiation
title_fullStr Differential Kat3 Usage Orchestrates the Integration of Cellular Metabolism with Differentiation
title_full_unstemmed Differential Kat3 Usage Orchestrates the Integration of Cellular Metabolism with Differentiation
title_short Differential Kat3 Usage Orchestrates the Integration of Cellular Metabolism with Differentiation
title_sort differential kat3 usage orchestrates the integration of cellular metabolism with differentiation
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8656857/
https://www.ncbi.nlm.nih.gov/pubmed/34884992
http://dx.doi.org/10.3390/cancers13235884
work_keys_str_mv AT huxiaohui differentialkat3usageorchestratestheintegrationofcellularmetabolismwithdifferentiation
AT onomasaya differentialkat3usageorchestratestheintegrationofcellularmetabolismwithdifferentiation
AT chimgenyamosor differentialkat3usageorchestratestheintegrationofcellularmetabolismwithdifferentiation
AT chosakeisuke differentialkat3usageorchestratestheintegrationofcellularmetabolismwithdifferentiation
AT nguyencu differentialkat3usageorchestratestheintegrationofcellularmetabolismwithdifferentiation
AT melendezelizabeth differentialkat3usageorchestratestheintegrationofcellularmetabolismwithdifferentiation
AT louchihhong differentialkat3usageorchestratestheintegrationofcellularmetabolismwithdifferentiation
AT limpunnajit differentialkat3usageorchestratestheintegrationofcellularmetabolismwithdifferentiation
AT terminijohn differentialkat3usageorchestratestheintegrationofcellularmetabolismwithdifferentiation
AT laikeaneky differentialkat3usageorchestratestheintegrationofcellularmetabolismwithdifferentiation
AT fuegerpatrickt differentialkat3usageorchestratestheintegrationofcellularmetabolismwithdifferentiation
AT teojialing differentialkat3usageorchestratestheintegrationofcellularmetabolismwithdifferentiation
AT higuchiyusuke differentialkat3usageorchestratestheintegrationofcellularmetabolismwithdifferentiation
AT kahnmichael differentialkat3usageorchestratestheintegrationofcellularmetabolismwithdifferentiation