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Search results 1 to 100 out of 157 for Cidea

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0.054s
Type Details Score
Gene
Type: gene
Organism: human
Gene
Type: gene
Organism: cattle
Gene
Type: gene
Organism: chicken
Gene
Type: gene
Organism: zebrafish
Gene
Type: gene
Organism: frog, western clawed
Gene
Type: gene
Organism: macaque, rhesus
Gene
Type: gene
Organism: rat
Gene
Type: gene
Organism: dog, domestic
Gene
Type: gene
Organism: chimpanzee
Protein Coding Gene
Type: protein_coding_gene
Organism: mouse, laboratory
Publication
First Author: Zhou L
Year: 2012
Journal: Hepatology
Title: Cidea promotes hepatic steatosis by sensing dietary fatty acids.
Volume: 56
Issue: 1
Pages: 95-107
Publication
First Author: Christianson JL
Year: 2010
Journal: J Lipid Res
Title: Identification of the lipid droplet targeting domain of the Cidea protein.
Volume: 51
Issue: 12
Pages: 3455-62
Publication
First Author: Puri V
Year: 2008
Journal: Proc Natl Acad Sci U S A
Title: Cidea is associated with lipid droplets and insulin sensitivity in humans.
Volume: 105
Issue: 22
Pages: 7833-8
Publication
First Author: Zhang S
Year: 2014
Journal: Mol Cell Biol
Title: Cidea control of lipid storage and secretion in mouse and human sebaceous glands.
Volume: 34
Issue: 10
Pages: 1827-38
Publication  
First Author: Barneda D
Year: 2015
Journal: Elife
Title: The brown adipocyte protein CIDEA promotes lipid droplet fusion via a phosphatidic acid-binding amphipathic helix.
Volume: 4
Pages: e07485
Publication
First Author: Wang W
Year: 2012
Journal: Nat Med
Title: Cidea is an essential transcriptional coactivator regulating mammary gland secretion of milk lipids.
Volume: 18
Issue: 2
Pages: 235-43
Publication
First Author: Wu L
Year: 2014
Journal: Sci China Life Sci
Title: Cidea controls lipid droplet fusion and lipid storage in brown and white adipose tissue.
Volume: 57
Issue: 1
Pages: 107-16
Publication
First Author: He Q
Year: 2018
Journal: Sci Rep
Title: SREBP1c mediates the effect of acetaldehyde on Cidea expression in Alcoholic fatty liver Mice.
Volume: 8
Issue: 1
Pages: 1200
Publication
First Author: Hallberg M
Year: 2008
Journal: Mol Cell Biol
Title: A functional interaction between RIP140 and PGC-1alpha regulates the expression of the lipid droplet protein CIDEA.
Volume: 28
Issue: 22
Pages: 6785-95
Publication
First Author: Nishimoto Y
Year: 2017
Journal: J Biol Chem
Title: Cell death-inducing DNA fragmentation factor A-like effector A and fat-specific protein 27β coordinately control lipid droplet size in brown adipocytes.
Volume: 292
Issue: 26
Pages: 10824-10834
Publication
First Author: Mau KHT
Year: 2022
Journal: Nat Commun
Title: Dynamic enlargement and mobilization of lipid droplets in pluripotent cells coordinate morphogenesis during mouse peri-implantation development.
Volume: 13
Issue: 1
Pages: 3861
Publication
First Author: Zhou L
Year: 2018
Journal: Diabetes
Title: Coordination Among Lipid Droplets, Peroxisomes, and Mitochondria Regulates Energy Expenditure Through the CIDE-ATGL-PPARα Pathway in Adipocytes.
Volume: 67
Issue: 10
Pages: 1935-1948
Publication
First Author: Hu F
Year: 2015
Journal: Diabetes
Title: miR-30 promotes thermogenesis and the development of beige fat by targeting RIP140.
Volume: 64
Issue: 6
Pages: 2056-68
Publication
First Author: Zhou Z
Year: 2003
Journal: Nat Genet
Title: Cidea-deficient mice have lean phenotype and are resistant to obesity.
Volume: 35
Issue: 1
Pages: 49-56
Publication
First Author: Viswakarma N
Year: 2007
Journal: J Biol Chem
Title: Transcriptional regulation of Cidea, mitochondrial cell death-inducing DNA fragmentation factor alpha-like effector A, in mouse liver by peroxisome proliferator-activated receptor alpha and gamma.
Volume: 282
Issue: 25
Pages: 18613-24
Publication
First Author: Qi J
Year: 2008
Journal: EMBO J
Title: Downregulation of AMP-activated protein kinase by Cidea-mediated ubiquitination and degradation in brown adipose tissue.
Volume: 27
Issue: 11
Pages: 1537-48
Publication
First Author: Xu W
Year: 2016
Journal: J Biol Chem
Title: Differential Roles of Cell Death-inducing DNA Fragmentation Factor-α-like Effector (CIDE) Proteins in Promoting Lipid Droplet Fusion and Growth in Subpopulations of Hepatocytes.
Volume: 291
Issue: 9
Pages: 4282-93
Protein Coding Gene
Type: protein_coding_gene
Organism: Mus caroli
Protein Coding Gene
Type: protein_coding_gene
Organism: mouse, laboratory
Protein Coding Gene
Type: protein_coding_gene
Organism: mouse, laboratory
Protein Coding Gene
Type: protein_coding_gene
Organism: mouse, laboratory
Protein Coding Gene
Type: protein_coding_gene
Organism: mouse, laboratory
Protein Coding Gene
Type: protein_coding_gene
Organism: mouse, laboratory
Protein Coding Gene
Type: protein_coding_gene
Organism: mouse, laboratory
Protein Coding Gene
Type: protein_coding_gene
Organism: mouse, laboratory
Protein Coding Gene
Type: protein_coding_gene
Organism: mouse, laboratory
Protein Coding Gene
Type: protein_coding_gene
Organism: mouse, laboratory
Protein Coding Gene
Type: protein_coding_gene
Organism: mouse, laboratory
Protein Coding Gene
Type: protein_coding_gene
Organism: mouse, laboratory
Protein Coding Gene
Type: protein_coding_gene
Organism: mouse, laboratory
Protein Coding Gene
Type: protein_coding_gene
Organism: mouse, laboratory
Protein Coding Gene
Type: protein_coding_gene
Organism: mouse, laboratory
Protein Coding Gene
Type: protein_coding_gene
Organism: mouse, laboratory
Protein Coding Gene
Type: protein_coding_gene
Organism: mouse, laboratory
Protein Coding Gene
Type: protein_coding_gene
Organism: Mus pahari
Protein Coding Gene
Type: protein_coding_gene
Organism: Mus spretus
Publication
First Author: Iwahana H
Year: 2006
Journal: Proteomics
Title: Glycoproteome profiling of transforming growth factor-beta (TGFbeta) signaling: nonglycosylated cell death-inducing DFF-like effector A inhibits TGFbeta1-dependent apoptosis.
Volume: 6
Issue: 23
Pages: 6168-80
GXD Expression      
Probe: MGI:4867413
Assay Type: RT-PCR
Annotation Date: 2011-01-11
Strength: Present
Sex: Not Specified
Emaps: EMAPS:1920924
Stage: TS24
Assay Id: MGI:4867452
Age: embryonic day 16.5
Specimen Label: E16.5
Detected: true
Specimen Num: 1
GXD Expression      
Probe: MGI:4867413
Assay Type: RT-PCR
Annotation Date: 2011-01-11
Strength: Present
Sex: Not Specified
Emaps: EMAPS:1920925
Stage: TS25
Assay Id: MGI:4867452
Age: embryonic day 17.5
Specimen Label: E17.5
Detected: true
Specimen Num: 2
GXD Expression      
Probe: MGI:4867413
Assay Type: RT-PCR
Annotation Date: 2011-01-11
Strength: Present
Sex: Not Specified
Emaps: EMAPS:1920926
Stage: TS26
Assay Id: MGI:4867452
Age: embryonic day 18.5
Specimen Label: E18.5
Detected: true
Specimen Num: 3
GXD Expression      
Probe: MGI:4867413
Assay Type: RT-PCR
Annotation Date: 2011-01-11
Strength: Present
Sex: Not Specified
Emaps: EMAPS:1920924
Stage: TS24
Assay Id: MGI:4867452
Age: embryonic day 16.5
Specimen Label: E16.5
Detected: true
Specimen Num: 4
GXD Expression      
Probe: MGI:4867413
Assay Type: RT-PCR
Annotation Date: 2011-01-11
Strength: Present
Sex: Not Specified
Emaps: EMAPS:1920925
Stage: TS25
Assay Id: MGI:4867452
Age: embryonic day 17.5
Specimen Label: E17.5
Detected: true
Specimen Num: 5
GXD Expression      
Probe: MGI:4867413
Assay Type: RT-PCR
Annotation Date: 2011-01-11
Strength: Present
Sex: Not Specified
Emaps: EMAPS:1920926
Stage: TS26
Assay Id: MGI:4867452
Age: embryonic day 18.5
Specimen Label: E18.5
Detected: true
Specimen Num: 6
GXD Expression      
Probe: MGI:4867413
Assay Type: RT-PCR
Annotation Date: 2011-01-11
Strength: Present
Sex: Not Specified
Emaps: EMAPS:1920924
Stage: TS24
Assay Id: MGI:4867452
Age: embryonic day 16.5
Specimen Label: E16.5
Detected: true
Specimen Num: 7
GXD Expression      
Probe: MGI:4867413
Assay Type: RT-PCR
Annotation Date: 2011-01-11
Strength: Present
Sex: Not Specified
Emaps: EMAPS:1920925
Stage: TS25
Assay Id: MGI:4867452
Age: embryonic day 17.5
Specimen Label: E17.5
Detected: true
Specimen Num: 8
GXD Expression      
Probe: MGI:4867413
Assay Type: RT-PCR
Annotation Date: 2011-01-11
Strength: Present
Sex: Not Specified
Emaps: EMAPS:1920926
Stage: TS26
Assay Id: MGI:4867452
Age: embryonic day 18.5
Specimen Label: E18.5
Detected: true
Specimen Num: 9
GXD Expression    
Probe: MGI:5312206
Assay Type: RT-PCR
Annotation Date: 2012-03-27
Strength: Present
Sex: Not Specified
Emaps: EMAPS:1752528
Stage: TS28
Assay Id: MGI:5312942
Age: postnatal day 11
Image: 8
Specimen Label: +/-
Detected: true
Specimen Num: 1
GXD Expression    
Probe: MGI:5312206
Assay Type: RT-PCR
Annotation Date: 2012-03-27
Strength: Present
Sex: Not Specified
Emaps: EMAPS:1752528
Stage: TS28
Assay Id: MGI:5312942
Age: postnatal day 11
Image: 8
Specimen Label: -/-
Detected: true
Specimen Num: 2
GXD Expression    
Probe: MGI:5770576
Assay Type: RT-PCR
Annotation Date: 2016-05-20
Strength: Present
Sex: Not Specified
Emaps: EMAPS:1920928
Stage: TS28
Assay Id: MGI:5770614
Age: postnatal
Image: 1 S2
Specimen Label: WT
Detected: true
Specimen Num: 1
GXD Expression    
Probe: MGI:5770576
Assay Type: RT-PCR
Annotation Date: 2016-05-20
Strength: Present
Sex: Not Specified
Emaps: EMAPS:1920928
Stage: TS28
Assay Id: MGI:5770614
Age: postnatal
Image: 1 S2
Specimen Label: KO
Detected: true
Specimen Num: 2
GXD Expression    
Probe: MGI:7384708
Assay Type: RT-PCR
Annotation Date: 2022-11-18
Strength: Present
Sex: Not Specified
Emaps: EMAPS:1920926
Stage: TS26
Assay Id: MGI:7384909
Age: embryonic day 18.5
Image: 5
Specimen Label: +/+ or -/-
Detected: true
Specimen Num: 1
GXD Expression    
Probe: MGI:7384708
Assay Type: RT-PCR
Annotation Date: 2022-11-18
Strength: Present
Sex: Not Specified
Emaps: EMAPS:1920926
Stage: TS26
Assay Id: MGI:7384909
Age: embryonic day 18.5
Image: 5
Specimen Label: -/-
Detected: true
Specimen Num: 2
GXD Expression      
Probe: MGI:7435042
Assay Type: RT-PCR
Annotation Date: 2023-02-16
Strength: Present
Sex: Not Specified
Emaps: EMAPS:1728626
Stage: TS26
Assay Id: MGI:7435049
Age: embryonic day 18.5
Specimen Label: E18.5 +/+
Detected: true
Specimen Num: 1
GXD Expression      
Probe: MGI:7435042
Assay Type: RT-PCR
Annotation Date: 2023-02-16
Strength: Present
Sex: Not Specified
Emaps: EMAPS:1728626
Stage: TS26
Assay Id: MGI:7435049
Age: embryonic day 18.5
Specimen Label: E18.5 -/-
Detected: true
Specimen Num: 2
GXD Expression    
Probe: MGI:7384708
Assay Type: RT-PCR
Annotation Date: 2023-11-13
Strength: Absent
Sex: Not Specified
Emaps: EMAPS:1920922
Stage: TS22
Assay Id: MGI:7547489
Age: embryonic day 14.5
Image: S3
Specimen Label: E14.5
Detected: false
Specimen Num: 1
GXD Expression    
Probe: MGI:7384708
Assay Type: RT-PCR
Annotation Date: 2023-11-13
Strength: Present
Sex: Not Specified
Emaps: EMAPS:1920923
Stage: TS23
Assay Id: MGI:7547489
Age: embryonic day 15.5
Image: S3
Specimen Label: E15.5
Detected: true
Specimen Num: 2
GXD Expression    
Probe: MGI:7384708
Assay Type: RT-PCR
Annotation Date: 2023-11-13
Strength: Present
Sex: Not Specified
Emaps: EMAPS:1920924
Stage: TS24
Assay Id: MGI:7547489
Age: embryonic day 16.5
Image: S3
Specimen Label: E16.5
Detected: true
Specimen Num: 3
GXD Expression    
Probe: MGI:7384708
Assay Type: RT-PCR
Annotation Date: 2023-11-13
Strength: Present
Sex: Not Specified
Emaps: EMAPS:1920922
Stage: TS22
Assay Id: MGI:7547514
Age: embryonic day 14.5
Image: S7
Specimen Label: E14.5
Detected: true
Specimen Num: 1
GXD Expression    
Probe: MGI:7384708
Assay Type: RT-PCR
Annotation Date: 2023-11-13
Strength: Present
Sex: Not Specified
Emaps: EMAPS:1920924
Stage: TS24
Assay Id: MGI:7547514
Age: embryonic day 16.5
Image: S7
Specimen Label: E16.5
Detected: true
Specimen Num: 5
Publication
First Author: Gong J
Year: 2011
Journal: J Cell Biol
Title: Fsp27 promotes lipid droplet growth by lipid exchange and transfer at lipid droplet contact sites.
Volume: 195
Issue: 6
Pages: 953-63
Publication
First Author: Kelder B
Year: 2007
Journal: Growth Horm IGF Res
Title: CIDE-A gene expression is decreased in white adipose tissue of growth hormone receptor/binding protein gene disrupted mice and with high-fat feeding of normal mice.
Volume: 17
Issue: 4
Pages: 346-51
Publication
First Author: Inohara N
Year: 1998
Journal: EMBO J
Title: CIDE, a novel family of cell death activators with homology to the 45 kDa subunit of the DNA fragmentation factor.
Volume: 17
Issue: 9
Pages: 2526-33
Publication
First Author: Rohm M
Year: 2016
Journal: Nat Med
Title: An AMP-activated protein kinase-stabilizing peptide ameliorates adipose tissue wasting in cancer cachexia in mice.
Volume: 22
Issue: 10
Pages: 1120-1130
Publication
First Author: Qian K
Year: 2023
Journal: Nature
Title: CLSTN3β enforces adipocyte multilocularity to facilitate lipid utilization.
Volume: 613
Issue: 7942
Pages: 160-168
Publication
First Author: Inohara N
Year: 1999
Journal: J Biol Chem
Title: Identification of regulatory and catalytic domains in the apoptosis nuclease DFF40/CAD.
Volume: 274
Issue: 1
Pages: 270-4
Publication
First Author: Rodríguez-de la Rosa L
Year: 2015
Journal: Hear Res
Title: Comparative gene expression study of the vestibular organ of the Igf1 deficient mouse using whole-transcript arrays.
Volume: 330
Issue: Pt A
Pages: 62-77
Publication
First Author: Sanchez-Gurmaches J
Year: 2012
Journal: Cell Metab
Title: PTEN loss in the Myf5 lineage redistributes body fat and reveals subsets of white adipocytes that arise from Myf5 precursors.
Volume: 16
Issue: 3
Pages: 348-62
Publication
First Author: Bai Z
Year: 2017
Journal: PLoS Biol
Title: Dynamic transcriptome changes during adipose tissue energy expenditure reveal critical roles for long noncoding RNA regulators.
Volume: 15
Issue: 8
Pages: e2002176
Publication
First Author: Yadav N
Year: 2008
Journal: EMBO Rep
Title: CARM1 promotes adipocyte differentiation by coactivating PPARgamma.
Volume: 9
Issue: 2
Pages: 193-8
Publication  
First Author: Fonseca TL
Year: 2022
Journal: Endocrinology
Title: Inactivation of Type 3 Deiodinase Results in Life-long Changes in the Brown Adipose Tissue Transcriptome in the Male Mouse.
Volume: 163
Issue: 5
Publication
First Author: Golas A
Year: 2008
Journal: Int J Dev Biol
Title: Gene mapping of sperm quality parameters in recombinant inbred strains of mice.
Volume: 52
Issue: 2-3
Pages: 287-93
Publication
First Author: Park A
Year: 2023
Journal: Nat Commun
Title: Mitochondrial matrix protein LETMD1 maintains thermogenic capacity of brown adipose tissue in male mice.
Volume: 14
Issue: 1
Pages: 3746
Publication
First Author: Chen Q
Year: 2018
Journal: Cell Rep
Title: Cbx4 Sumoylates Prdm16 to Regulate Adipose Tissue Thermogenesis.
Volume: 22
Issue: 11
Pages: 2860-2872
Publication    
First Author: Zhou H
Year: 2014
Journal: Elife
Title: TAF7L modulates brown adipose tissue formation.
Volume: 3
Publication
First Author: Kajimura S
Year: 2009
Journal: Nature
Title: Initiation of myoblast to brown fat switch by a PRDM16-C/EBP-beta transcriptional complex.
Volume: 460
Issue: 7259
Pages: 1154-8
Publication
First Author: Seale P
Year: 2008
Journal: Nature
Title: PRDM16 controls a brown fat/skeletal muscle switch.
Volume: 454
Issue: 7207
Pages: 961-7
Publication
First Author: Hall JA
Year: 2010
Journal: Endocrinology
Title: Absence of thyroid hormone activation during development underlies a permanent defect in adaptive thermogenesis.
Volume: 151
Issue: 9
Pages: 4573-82
Publication
First Author: Sun C
Year: 2017
Journal: Development
Title: PDGFRα controls the balance of stromal and adipogenic cells during adipose tissue organogenesis.
Volume: 144
Issue: 1
Pages: 83-94
Publication
First Author: Zhu X
Year: 2017
Journal: Mol Metab
Title: Rasal2 deficiency reduces adipogenesis and occurrence of obesity-related disorders.
Volume: 6
Issue: 6
Pages: 494-502
Publication
First Author: Van De Pette M
Year: 2016
Journal: PLoS Genet
Title: Cdkn1c Boosts the Development of Brown Adipose Tissue in a Murine Model of Silver Russell Syndrome.
Volume: 12
Issue: 3
Pages: e1005916
Publication
First Author: Olson LE
Year: 2005
Journal: Proc Natl Acad Sci U S A
Title: Barx2 functions through distinct corepressor classes to regulate hair follicle remodeling.
Volume: 102
Issue: 10
Pages: 3708-13
Publication
First Author: Cautivo KM
Year: 2016
Journal: Mol Metab
Title: AGPAT2 is essential for postnatal development and maintenance of white and brown adipose tissue.
Volume: 5
Issue: 7
Pages: 491-505
Publication
First Author: Baur JA
Year: 2006
Journal: Nature
Title: Resveratrol improves health and survival of mice on a high-calorie diet.
Volume: 444
Issue: 7117
Pages: 337-42
Publication
First Author: Singh R
Year: 2017
Journal: Endocrinology
Title: Follistatin Targets Distinct Pathways To Promote Brown Adipocyte Characteristics in Brown and White Adipose Tissues.
Volume: 158
Issue: 5
Pages: 1217-1230
Publication
First Author: Vázquez P
Year: 2018
Journal: J Lipid Res
Title: Increased FGF21 in brown adipose tissue of tyrosine hydroxylase heterozygous mice: implications for cold adaptation.
Volume: 59
Issue: 12
Pages: 2308-2320
Publication  
First Author: Holzman MA
Year: 2021
Journal: Front Cell Dev Biol
Title: HOXA5 Participates in Brown Adipose Tissue and Epaxial Skeletal Muscle Patterning and in Brown Adipocyte Differentiation.
Volume: 9
Pages: 632303
Publication
First Author: Zhuang L
Year: 2018
Journal: Nat Commun
Title: Depletion of Nsd2-mediated histone H3K36 methylation impairs adipose tissue development and function.
Volume: 9
Issue: 1
Pages: 1796
Publication
First Author: Liang Q
Year: 2019
Journal: Cell Rep
Title: SENP2 Suppresses Necdin Expression to Promote Brown Adipocyte Differentiation.
Volume: 28
Issue: 8
Pages: 2004-2011.e4
Publication
First Author: Labialle S
Year: 2014
Journal: EMBO J
Title: The miR-379/miR-410 cluster at the imprinted Dlk1-Dio3 domain controls neonatal metabolic adaptation.
Volume: 33
Issue: 19
Pages: 2216-30
Publication
First Author: Mayeuf-Louchart A
Year: 2019
Journal: Cell Rep
Title: Glycogen Dynamics Drives Lipid Droplet Biogenesis during Brown Adipocyte Differentiation.
Volume: 29
Issue: 6
Pages: 1410-1418.e6