Asset Details
MbrlCatalogueTitleDetail
Do you wish to reserve the book?
Nuclear receptor corepressors non-canonically drive glucocorticoid receptor-dependent activation of hepatic gluconeogenesis
by
Krieg, Maria K.
, Carpenter, Bryce J.
, Tackenberg, Michael C.
, Hauck, Amy K.
, Mehmood, Rashid
, Zundell, Delaine M.
, Batmanov, Kirill
, Inoue, Shin-ichi
, Cassim Bawa, Fathima N.
, Lazar, Mitchell A.
, Frankfurter, Maxwell T.
, Midha, Mohit K.
in
13
/ 38/91
/ 42
/ 45
/ 45/15
/ 59
/ 631/208/200
/ 631/337/572/2102
/ 631/443/319
/ 631/443/319/1557
/ 64
/ 64/60
/ 96
/ Animals
/ Biomedical and Life Sciences
/ Chromatin remodeling
/ Fasting
/ Fatty liver
/ Gene expression
/ Gene silencing
/ Glucocorticoid receptors
/ Glucocorticoids
/ Gluconeogenesis
/ Gluconeogenesis - genetics
/ Glucose
/ Glycogen
/ Hepatocytes
/ Hepatocytes - metabolism
/ Histone deacetylase
/ Histone Deacetylase 3
/ Histone Deacetylases - genetics
/ Histone Deacetylases - metabolism
/ Hypoglycemia
/ Inflammation
/ Letter
/ Life Sciences
/ Ligands
/ Lipids
/ Liver
/ Liver - metabolism
/ Metabolism
/ Mice
/ Mice, Knockout
/ Nuclear Receptor Co-Repressor 1 - genetics
/ Nuclear Receptor Co-Repressor 1 - metabolism
/ Nuclear Receptor Co-Repressor 2 - genetics
/ Nuclear Receptor Co-Repressor 2 - metabolism
/ Nuclear Receptor Coactivator 2 - genetics
/ Nuclear Receptor Coactivator 2 - metabolism
/ Phenotypes
/ Proteins
/ Receptors, Glucocorticoid - genetics
/ Receptors, Glucocorticoid - metabolism
/ Variance analysis
2024
Hey, we have placed the reservation for you!
By the way, why not check out events that you can attend while you pick your title.
You are currently in the queue to collect this book. You will be notified once it is your turn to collect the book.
Oops! Something went wrong.
Looks like we were not able to place the reservation. Kindly try again later.
Are you sure you want to remove the book from the shelf?
Nuclear receptor corepressors non-canonically drive glucocorticoid receptor-dependent activation of hepatic gluconeogenesis
by
Krieg, Maria K.
, Carpenter, Bryce J.
, Tackenberg, Michael C.
, Hauck, Amy K.
, Mehmood, Rashid
, Zundell, Delaine M.
, Batmanov, Kirill
, Inoue, Shin-ichi
, Cassim Bawa, Fathima N.
, Lazar, Mitchell A.
, Frankfurter, Maxwell T.
, Midha, Mohit K.
in
13
/ 38/91
/ 42
/ 45
/ 45/15
/ 59
/ 631/208/200
/ 631/337/572/2102
/ 631/443/319
/ 631/443/319/1557
/ 64
/ 64/60
/ 96
/ Animals
/ Biomedical and Life Sciences
/ Chromatin remodeling
/ Fasting
/ Fatty liver
/ Gene expression
/ Gene silencing
/ Glucocorticoid receptors
/ Glucocorticoids
/ Gluconeogenesis
/ Gluconeogenesis - genetics
/ Glucose
/ Glycogen
/ Hepatocytes
/ Hepatocytes - metabolism
/ Histone deacetylase
/ Histone Deacetylase 3
/ Histone Deacetylases - genetics
/ Histone Deacetylases - metabolism
/ Hypoglycemia
/ Inflammation
/ Letter
/ Life Sciences
/ Ligands
/ Lipids
/ Liver
/ Liver - metabolism
/ Metabolism
/ Mice
/ Mice, Knockout
/ Nuclear Receptor Co-Repressor 1 - genetics
/ Nuclear Receptor Co-Repressor 1 - metabolism
/ Nuclear Receptor Co-Repressor 2 - genetics
/ Nuclear Receptor Co-Repressor 2 - metabolism
/ Nuclear Receptor Coactivator 2 - genetics
/ Nuclear Receptor Coactivator 2 - metabolism
/ Phenotypes
/ Proteins
/ Receptors, Glucocorticoid - genetics
/ Receptors, Glucocorticoid - metabolism
/ Variance analysis
2024
Oops! Something went wrong.
While trying to remove the title from your shelf something went wrong :( Kindly try again later!
Do you wish to request the book?
Nuclear receptor corepressors non-canonically drive glucocorticoid receptor-dependent activation of hepatic gluconeogenesis
by
Krieg, Maria K.
, Carpenter, Bryce J.
, Tackenberg, Michael C.
, Hauck, Amy K.
, Mehmood, Rashid
, Zundell, Delaine M.
, Batmanov, Kirill
, Inoue, Shin-ichi
, Cassim Bawa, Fathima N.
, Lazar, Mitchell A.
, Frankfurter, Maxwell T.
, Midha, Mohit K.
in
13
/ 38/91
/ 42
/ 45
/ 45/15
/ 59
/ 631/208/200
/ 631/337/572/2102
/ 631/443/319
/ 631/443/319/1557
/ 64
/ 64/60
/ 96
/ Animals
/ Biomedical and Life Sciences
/ Chromatin remodeling
/ Fasting
/ Fatty liver
/ Gene expression
/ Gene silencing
/ Glucocorticoid receptors
/ Glucocorticoids
/ Gluconeogenesis
/ Gluconeogenesis - genetics
/ Glucose
/ Glycogen
/ Hepatocytes
/ Hepatocytes - metabolism
/ Histone deacetylase
/ Histone Deacetylase 3
/ Histone Deacetylases - genetics
/ Histone Deacetylases - metabolism
/ Hypoglycemia
/ Inflammation
/ Letter
/ Life Sciences
/ Ligands
/ Lipids
/ Liver
/ Liver - metabolism
/ Metabolism
/ Mice
/ Mice, Knockout
/ Nuclear Receptor Co-Repressor 1 - genetics
/ Nuclear Receptor Co-Repressor 1 - metabolism
/ Nuclear Receptor Co-Repressor 2 - genetics
/ Nuclear Receptor Co-Repressor 2 - metabolism
/ Nuclear Receptor Coactivator 2 - genetics
/ Nuclear Receptor Coactivator 2 - metabolism
/ Phenotypes
/ Proteins
/ Receptors, Glucocorticoid - genetics
/ Receptors, Glucocorticoid - metabolism
/ Variance analysis
2024
Please be aware that the book you have requested cannot be checked out. If you would like to checkout this book, you can reserve another copy
We have requested the book for you!
Your request is successful and it will be processed during the Library working hours. Please check the status of your request in My Requests.
Oops! Something went wrong.
Looks like we were not able to place your request. Kindly try again later.
Nuclear receptor corepressors non-canonically drive glucocorticoid receptor-dependent activation of hepatic gluconeogenesis
Journal Article
Nuclear receptor corepressors non-canonically drive glucocorticoid receptor-dependent activation of hepatic gluconeogenesis
2024
Request Book From Autostore
and Choose the Collection Method
Overview
Nuclear receptor corepressors (NCoRs) function in multiprotein complexes containing histone deacetylase 3 (HDAC3) to alter transcriptional output primarily through repressive chromatin remodelling at target loci
1
–
5
. In the liver, loss of HDAC3 causes a marked hepatosteatosis largely because of de-repression of genes involved in lipid metabolism
6
,
7
; however, the individual roles and contribution of other complex members to hepatic and systemic metabolic regulation are unclear. Here we show that adult loss of both NCoR1 and NCoR2 (double knockout (KO)) in hepatocytes phenocopied the hepatomegalic fatty liver phenotype of HDAC3 KO. In addition, double KO livers exhibited a dramatic reduction in glycogen storage and gluconeogenic gene expression that was not observed with hepatic KO of individual NCoRs or HDAC3, resulting in profound fasting hypoglycaemia. This surprising HDAC3-independent activation function of NCoR1 and NCoR2 is due to an unexpected loss of chromatin accessibility on deletion of NCoRs that prevented glucocorticoid receptor binding and stimulatory effect on gluconeogenic genes. These studies reveal an unanticipated, non-canonical activation function of NCoRs that is required for metabolic health.
Hauck et al. show that during fasting, nuclear receptor corepressors 1 and 2 act together to activate the transcription of target genes, which is critical for the physiological response to fasting in mice.
Publisher
Nature Publishing Group UK,Nature Publishing Group
Subject
/ 38/91
/ 42
/ 45
/ 45/15
/ 59
/ 64
/ 64/60
/ 96
/ Animals
/ Biomedical and Life Sciences
/ Fasting
/ Glucose
/ Glycogen
/ Histone Deacetylases - genetics
/ Histone Deacetylases - metabolism
/ Letter
/ Ligands
/ Lipids
/ Liver
/ Mice
/ Nuclear Receptor Co-Repressor 1 - genetics
/ Nuclear Receptor Co-Repressor 1 - metabolism
/ Nuclear Receptor Co-Repressor 2 - genetics
/ Nuclear Receptor Co-Repressor 2 - metabolism
/ Nuclear Receptor Coactivator 2 - genetics
/ Nuclear Receptor Coactivator 2 - metabolism
/ Proteins
/ Receptors, Glucocorticoid - genetics
This website uses cookies to ensure you get the best experience on our website.