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Search results 2201 to 2300 out of 2532 for Arnt

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Type Details Score
Publication
First Author: Kettner NM
Year: 2016
Journal: Cancer Cell
Title: Circadian Homeostasis of Liver Metabolism Suppresses Hepatocarcinogenesis.
Volume: 30
Issue: 6
Pages: 909-924
Publication
First Author: Chaix A
Year: 2019
Journal: Cell Metab
Title: Time-Restricted Feeding Prevents Obesity and Metabolic Syndrome in Mice Lacking a Circadian Clock.
Volume: 29
Issue: 2
Pages: 303-319.e4
Publication  
First Author: Malhotra N
Year: 2018
Journal: Sci Immunol
Title: RORα-expressing T regulatory cells restrain allergic skin inflammation.
Volume: 3
Issue: 21
Publication
First Author: Jung Y
Year: 2019
Journal: J Biol Chem
Title: The RNA-binding protein hnRNP Q represses translation of the clock gene Bmal1 in murine cells.
Volume: 294
Issue: 19
Pages: 7682-7691
Publication
First Author: Zhang Y
Year: 2018
Journal: Biochem J
Title: Deubiquitinating enzyme USP9X regulates cellular clock function by modulating the ubiquitination and degradation of a core circadian protein BMAL1.
Volume: 475
Issue: 8
Pages: 1507-1522
Publication
First Author: Cox SL
Year: 2023
Journal: FASEB J
Title: Circadian disruption in lung fibroblasts enhances NF-κB activity to exacerbate neutrophil recruitment.
Volume: 37
Issue: 2
Pages: e22753
Publication  
First Author: Zhao H
Year: 2024
Journal: Biochem Biophys Res Commun
Title: Identification of BMAL1-Regulated circadian genes in mouse liver and their potential association with hepatocellular carcinoma: Gys2 and Upp2 as promising candidates.
Volume: 696
Pages: 149422
Publication
First Author: Dandavate V
Year: 2024
Journal: Cell Metab
Title: Hepatic BMAL1 and HIF1α regulate a time-dependent hypoxic response and prevent hepatopulmonary-like syndrome.
Volume: 36
Issue: 9
Pages: 2038-2053.e5
Publication
First Author: Shi G
Year: 2013
Journal: Proc Natl Acad Sci U S A
Title: Dual roles of FBXL3 in the mammalian circadian feedback loops are important for period determination and robustness of the clock.
Volume: 110
Issue: 12
Pages: 4750-5
Publication
First Author: Sato F
Year: 2004
Journal: Eur J Biochem
Title: Functional analysis of the basic helix-loop-helix transcription factor DEC1 in circadian regulation. Interaction with BMAL1.
Volume: 271
Issue: 22
Pages: 4409-19
Publication
First Author: Lee C
Year: 2001
Journal: Cell
Title: Posttranslational mechanisms regulate the mammalian circadian clock.
Volume: 107
Issue: 7
Pages: 855-67
Publication
First Author: Robles MS
Year: 2010
Journal: Science
Title: Identification of RACK1 and protein kinase Calpha as integral components of the mammalian circadian clock.
Volume: 327
Issue: 5964
Pages: 463-6
Publication
First Author: Gekakis N
Year: 1998
Journal: Science
Title: Role of the CLOCK protein in the mammalian circadian mechanism.
Volume: 280
Issue: 5369
Pages: 1564-9
Publication
First Author: Hirayama J
Year: 2007
Journal: Nature
Title: CLOCK-mediated acetylation of BMAL1 controls circadian function.
Volume: 450
Issue: 7172
Pages: 1086-90
Publication
First Author: Czarna A
Year: 2011
Journal: J Biol Chem
Title: Quantitative analyses of cryptochrome-mBMAL1 interactions: mechanistic insights into the transcriptional regulation of the mammalian circadian clock.
Volume: 286
Issue: 25
Pages: 22414-25
Publication
First Author: Mongrain V
Year: 2011
Journal: PLoS One
Title: Sleep loss reduces the DNA-binding of BMAL1, CLOCK, and NPAS2 to specific clock genes in the mouse cerebral cortex.
Volume: 6
Issue: 10
Pages: e26622
Publication  
First Author: Moriya S
Year: 2015
Journal: Neurosci Res
Title: Housing under abnormal light-dark cycles attenuates day/night expression rhythms of the clock genes Per1, Per2, and Bmal1 in the amygdala and hippocampus of mice.
Volume: 99
Pages: 16-21
Publication
First Author: Wu Y
Year: 2017
Journal: Cell Metab
Title: Reciprocal Regulation between the Circadian Clock and Hypoxia Signaling at the Genome Level in Mammals.
Volume: 25
Issue: 1
Pages: 73-85
Strain
Attribute String: congenic, mutant strain, spontaneous mutation, targeted mutation
Strain
Attribute String: congenic, targeted mutation
Strain
Attribute String: mutant strain, targeted mutation, congenic
Strain
Attribute String: congenic, mutant strain, targeted mutation
Strain
Attribute String: congenic, mutant strain, transgenic, targeted mutation
Strain
Attribute String: congenic, mutant strain, targeted mutation, transgenic
Strain
Attribute String: mutant strain, coisogenic, targeted mutation
Strain
Attribute String: coisogenic, endonuclease-mediated mutation, mutant strain
Strain
Attribute String: coisogenic, endonuclease-mediated mutation, mutant strain
Strain
Attribute String: coisogenic, mutant strain, endonuclease-mediated mutation
Strain
Attribute String: coisogenic, mutant strain, endonuclease-mediated mutation
Strain
Attribute String: coisogenic, mutant strain, endonuclease-mediated mutation
Genotype
Symbol: Bmal1/Bmal1
Background: B6.129-Bmal1
Zygosity: hm
Has Mutant Allele: true
Genotype
Symbol: Bmal1/Bmal1
Background: involves: 129
Zygosity: hm
Has Mutant Allele: true
Genotype
Symbol: Bmal1/Bmal1 Tg(Chx10-EGFP/cre,-ALPP)2Clc/?
Background: involves: 129S4/SvJae * C57BL/6
Zygosity: cn
Has Mutant Allele: true
Genotype
Symbol: Bmal1/Bmal1
Background: involves: 129/Sv * C57BL/6
Zygosity: hm
Has Mutant Allele: true
Genotype
Symbol: Bmal1/Bmal1
Background: involves: 129/Sv * C57BL/6 * C57BL/6J
Zygosity: hm
Has Mutant Allele: true
Genotype
Symbol: Bmal1/Bmal1 Tg(Tek-cre)12Flv/?
Background: involves: C3H * C57BL/6 * C57BL/6J
Zygosity: cn
Has Mutant Allele: true
Genotype
Symbol: Bmal1/Bmal1 Tg(Pdx1-cre)89.1Dam/?
Background: involves: 129 * C57BL/6 * C57BL/6J * CBA * ICR
Zygosity: cn
Has Mutant Allele: true
Genotype
Symbol: Bmal1/Bmal1 Tg(Ckmm-cre)5Khn/?
Background: involves: C57BL/6J * FVB
Zygosity: cn
Has Mutant Allele: true
Genotype
Symbol: Bmal1/Bmal1 Tg(Nr5a1-cre)2Klp/?
Background: B6.Cg-Bmal1 Tg(Nr5a1-cre)2Klp
Zygosity: cn
Has Mutant Allele: true
Genotype
Symbol: Bmal1/Bmal1 Tg(Fabp4-cre)1Rev/?
Background: involves: C57BL/6J
Zygosity: cn
Has Mutant Allele: true
Genotype
Symbol: Bmal1/Bmal1 Tg(Myh6-cre)2182Mds/?
Background: involves: 129S4/SvJae * C57BL/6J * FVB/N
Zygosity: cn
Has Mutant Allele: true
Genotype
Symbol: Bmal1/Bmal1
Background: involves: 129 * C57BL/6J
Zygosity: hm
Has Mutant Allele: true
Genotype
Symbol: Bmal1/Bmal1 Tg(Col2a1-cre)1Asz/?
Background: involves: 129S4/SvJae * C57BL/6 * CBA
Zygosity: cn
Has Mutant Allele: true
Genotype
Symbol: Bmal1/Bmal1 Tg(Myh6-cre)2182Mds/?
Background: B6.Cg-Bmal1 Tg(Myh6-cre)2182Mds
Zygosity: cn
Has Mutant Allele: true
Genotype
Symbol: Bmal1/Bmal1
Background: involves: 129 * C57BL/6
Zygosity: hm
Has Mutant Allele: true
Genotype
Symbol: Bmal1/Bmal1 Tg(Nes-cre)1Kln/?
Background: involves: 129S4/SvJae * C57BL/6J * SJL
Zygosity: cn
Has Mutant Allele: true
Genotype
Symbol: Bmal1/Bmal1 Tg(PTH-cre)4167Slib/?
Background: involves: 129S4/SvJae * C57BL/6J
Zygosity: cn
Has Mutant Allele: true
Genotype
Symbol: Bmal1/Bmal1 Tg(Vil1-cre)997Gum/?
Background: B6.Cg-Bmal1 Tg(Vil1-cre)997Gum
Zygosity: cn
Has Mutant Allele: true
Genotype
Symbol: Bmal1/Bmal1 Tg(ITGAM-cre)2781Gkl/?
Background: involves: 129S4/SvJae * C57BL/6 * CBA
Zygosity: cn
Has Mutant Allele: true
Genotype
Symbol: Bmal1/Bmal1 Tg(Myh6-cre)2182Mds/?
Background: involves: 129 * C57BL/6 * FVB/N
Zygosity: cn
Has Mutant Allele: true
Genotype
Symbol: Bmal1/Bmal1 Tg(Camk2a-cre)2Gsc/?
Background: involves: 129 * FVB/N
Zygosity: cn
Has Mutant Allele: true
Genotype
Symbol: Bmal1/Bmal1 Tg(S100A8-cre,-EGFP)1Ilw/?
Background: involves: 129S4/SvJae * C3H * C57BL/6
Zygosity: cn
Has Mutant Allele: true
Genotype
Symbol: Bmal1/Bmal1 Tg(ACTA1-cre)79Jme/?
Background: involves: C57BL/6J * SJL
Zygosity: cn
Has Mutant Allele: true
Genotype
Symbol: Bmal1/Bmal1 Tg(Vil1-cre)997Gum/?
Background: involves: C57BL/6J
Zygosity: cn
Has Mutant Allele: true
Genotype
Symbol: Bmal1/Bmal1 Tg(Alb1-cre)7Gsc/?
Background: involves: 129S4/SvJae * C57BL/6J * FVB/N
Zygosity: cn
Has Mutant Allele: true
GO Term
Protein Domain
Type: Domain
Description: ArnT is a member of the GT-C family of glycosyltransferases, and it has a similar fold to a bacterial oligosaccharyltransferase (OST) from Campylobacter lari (PglB) and to an archaeal OST from Archaeoglobus fulgidus (AglB). This entry represents the C-terminal periplasmic domain of Arnt proteins [].
Publication
First Author: Xu CX
Year: 2010
Journal: Toxicol Sci
Title: Disruption of CLOCK-BMAL1 transcriptional activity is responsible for aryl hydrocarbon receptor-mediated regulation of Period1 gene.
Volume: 115
Issue: 1
Pages: 98-108
Publication
First Author: Hwang CK
Year: 2013
Journal: J Neurosci
Title: Circadian rhythm of contrast sensitivity is regulated by a dopamine-neuronal PAS-domain protein 2-adenylyl cyclase 1 signaling pathway in retinal ganglion cells.
Volume: 33
Issue: 38
Pages: 14989-97
Publication
First Author: Doi R
Year: 2010
Journal: J Biol Chem
Title: CLOCK regulates circadian rhythms of hepatic glycogen synthesis through transcriptional activation of Gys2.
Volume: 285
Issue: 29
Pages: 22114-21
Publication  
First Author: Ozber N
Year: 2010
Journal: BMC Mol Biol
Title: Identification of two amino acids in the C-terminal domain of mouse CRY2 essential for PER2 interaction.
Volume: 11
Pages: 69
Publication
First Author: Richards J
Year: 2013
Journal: Am J Physiol Renal Physiol
Title: A role for the circadian clock protein Per1 in the regulation of aldosterone levels and renal Na+ retention.
Volume: 305
Issue: 12
Pages: F1697-704
Publication
First Author: Sahar S
Year: 2010
Journal: PLoS One
Title: Regulation of BMAL1 protein stability and circadian function by GSK3beta-mediated phosphorylation.
Volume: 5
Issue: 1
Pages: e8561
Publication
First Author: Han DH
Year: 2014
Journal: Mol Cell Endocrinol
Title: Modulation of glucocorticoid receptor induction properties by core circadian clock proteins.
Volume: 383
Issue: 1-2
Pages: 170-80
Publication
First Author: Ye R
Year: 2011
Journal: J Biol Chem
Title: Biochemical analysis of the canonical model for the mammalian circadian clock.
Volume: 286
Issue: 29
Pages: 25891-902
Publication
First Author: Miki T
Year: 2012
Journal: EMBO J
Title: PML regulates PER2 nuclear localization and circadian function.
Volume: 31
Issue: 6
Pages: 1427-39
Publication
First Author: Qu M
Year: 2018
Journal: Proc Natl Acad Sci U S A
Title: Nuclear receptor HNF4A transrepresses CLOCK:BMAL1 and modulates tissue-specific circadian networks.
Volume: 115
Issue: 52
Pages: E12305-E12312
Publication    
First Author: Petkau N
Year: 2019
Journal: Elife
Title: Acetylation of BMAL1 by TIP60 controls BRD4-P-TEFb recruitment to circadian promoters.
Volume: 8
Publication
First Author: Dufour CR
Year: 2011
Journal: PLoS Genet
Title: Genomic convergence among ERRα, PROX1, and BMAL1 in the control of metabolic clock outputs.
Volume: 7
Issue: 6
Pages: e1002143
Publication
First Author: Liu J
Year: 2016
Journal: Endocrinology
Title: CLOCK and BMAL1 Regulate Muscle Insulin Sensitivity via SIRT1 in Male Mice.
Volume: 157
Issue: 6
Pages: 2259-69
Publication
First Author: Lipton JO
Year: 2017
Journal: Cell Rep
Title: Aberrant Proteostasis of BMAL1 Underlies Circadian Abnormalities in a Paradigmatic mTOR-opathy.
Volume: 20
Issue: 4
Pages: 868-880
Publication  
First Author: Shimomura K
Year: 2013
Journal: Elife
Title: Usf1, a suppressor of the circadian Clock mutant, reveals the nature of the DNA-binding of the CLOCK:BMAL1 complex in mice.
Volume: 2
Pages: e00426
Publication
First Author: Zagni C
Year: 2017
Journal: Stem Cell Reports
Title: PTEN Mediates Activation of Core Clock Protein BMAL1 and Accumulation of Epidermal Stem Cells.
Volume: 9
Issue: 1
Pages: 304-314
Publication
First Author: Zhao L
Year: 2021
Journal: Am J Physiol Endocrinol Metab
Title: Bmal1 promotes prostaglandin E2 synthesis by upregulating Ptgs2 transcription in response to increasing estradiol levels in day 4 pregnant mice.
Volume: 320
Issue: 4
Pages: E747-E759
Publication
First Author: Wang CY
Year: 2015
Journal: Biochem Biophys Res Commun
Title: FTO modulates circadian rhythms and inhibits the CLOCK-BMAL1-induced transcription.
Volume: 464
Issue: 3
Pages: 826-32
Publication
First Author: Kiyohara YB
Year: 2006
Journal: Proc Natl Acad Sci U S A
Title: The BMAL1 C terminus regulates the circadian transcription feedback loop.
Volume: 103
Issue: 26
Pages: 10074-9
Publication
First Author: Shim HS
Year: 2007
Journal: EMBO Rep
Title: Rapid activation of CLOCK by Ca2+-dependent protein kinase C mediates resetting of the mammalian circadian clock.
Volume: 8
Issue: 4
Pages: 366-71
Publication
First Author: Amano T
Year: 2009
Journal: Biol Reprod
Title: Expression and functional analyses of circadian genes in mouse oocytes and preimplantation embryos: Cry1 is involved in the meiotic process independently of circadian clock regulation.
Volume: 80
Issue: 3
Pages: 473-83
Publication
First Author: Zheng L
Year: 2011
Journal: Gene Expr Patterns
Title: Expression of clock proteins in developing tooth.
Volume: 11
Issue: 3-4
Pages: 202-6
Publication
First Author: Ye R
Year: 2014
Journal: Genes Dev
Title: Dual modes of CLOCK:BMAL1 inhibition mediated by Cryptochrome and Period proteins in the mammalian circadian clock.
Volume: 28
Issue: 18
Pages: 1989-98
Publication  
First Author: Miki T
Year: 2013
Journal: Nat Commun
Title: p53 regulates Period2 expression and the circadian clock.
Volume: 4
Pages: 2444
Publication
First Author: Yujnovsky I
Year: 2006
Journal: Proc Natl Acad Sci U S A
Title: Signaling mediated by the dopamine D2 receptor potentiates circadian regulation by CLOCK:BMAL1.
Volume: 103
Issue: 16
Pages: 6386-91
Publication  
First Author: Zhou M
Year: 2024
Journal: Front Immunol
Title: BMAL2 promotes eCIRP-induced macrophage endotoxin tolerance.
Volume: 15
Pages: 1426682
Strain
Attribute String: congenic, mutant strain, targeted mutation
Genotype
Symbol: Arnt/Arnt
Background: B6.129-Arnt
Zygosity: hm
Has Mutant Allele: true
Genotype
Symbol: Arnt/Arnt
Background: involves: 129
Zygosity: hm
Has Mutant Allele: true
Publication      
First Author: Bell BJ
Year: 2020
Journal: bioRxiv
Title: A clock-driven neural network critical for arousal.
Publication
First Author: Xu H
Year: 2015
Journal: Nat Struct Mol Biol
Title: Cryptochrome 1 regulates the circadian clock through dynamic interactions with the BMAL1 C terminus.
Volume: 22
Issue: 6
Pages: 476-484
Genotype
Symbol: Bmal1/Bmal1 Tg(ACTA1-Arntl)1Jt/?
Background: involves: 129/Sv * C57BL/6J * CD-1
Zygosity: cx
Has Mutant Allele: true
Genotype
Symbol: Bmal1/Bmal1 Syt10/Syt10<+>
Background: involves: 129S2/SvPas * 129S4/SvJaeSor * C57BL/6
Zygosity: cn
Has Mutant Allele: true
Genotype
Symbol: Bmal1/Bmal1 Syt10/Syt10
Background: involves: 129S2/SvPas * 129S4/SvJaeSor * C57BL/6
Zygosity: cx
Has Mutant Allele: true
Genotype
Symbol: Bmal1/Bmal1 Tmem163/?
Background: involves: C57BL/6 * FVB/N
Zygosity: cn
Has Mutant Allele: true
Genotype
Symbol: Bmal1/Bmal1<+>
Background: involves: 129 * C57BL/6
Zygosity: ht
Has Mutant Allele: true
Genotype
Symbol: Bmal1/Bmal1 Tg(Mylk-cre)1Ljm/?
Background: involves: C57BL/6
Zygosity: cn
Has Mutant Allele: true
Genotype
Symbol: Bmal1/Bmal1<+>
Background: involves: 129
Zygosity: ht
Has Mutant Allele: true
Genotype
Symbol: Bmal1/Bmal1 Nfil3/Nfil3
Background: involves: 129 * C57BL/6 * FVB/N
Zygosity: cx
Has Mutant Allele: true
Genotype
Symbol: Bmal1/Bmal1 Per2/Per2
Background: involves: 129 * C57BL/6J * CBA
Zygosity: cx
Has Mutant Allele: true
Genotype
Symbol: Bmal1/Bmal1 Tg(ACTA1-cre)79Jme/? Tg(Alb1-cre)7Gsc/?
Background: involves: C57BL/6J * FVB/N * SJL
Zygosity: cn
Has Mutant Allele: true
Genotype
Symbol: Bmal1/Bmal1 Syt10/Syt10<+>
Background: involves: 129S2/SvPas * C57BL/6
Zygosity: cn
Has Mutant Allele: true
Publication
First Author: Kawamoto T
Year: 2004
Journal: Biochem Biophys Res Commun
Title: A novel autofeedback loop of Dec1 transcription involved in circadian rhythm regulation.
Volume: 313
Issue: 1
Pages: 117-24