| Type |
Details |
Score |
| GXD Expression |
| Probe: |
MGI:7581887 |
| Assay Type: |
Immunohistochemistry |
| Annotation Date: |
2024-02-13 |
| Strength: |
Present |
| Sex: |
Not Specified |
| Emaps: |
EMAPS:1759723 |
| Pattern: |
Regionally restricted |
| Stage: |
TS23 |
| Assay Id: |
MGI:7581990 |
| Age: |
embryonic day 15.5 |
| Image: |
1B E15.5 |
| Note: |
Partial overlap of expression with Prdm16 was noted in the region of inner supporting cells. |
| Specimen Label: |
1B E15.5 |
| Detected: |
true |
| Specimen Num: |
3 |
|
•
•
•
•
•
|
| GXD Expression |
| Probe: |
MGI:7581887 |
| Assay Type: |
Immunohistochemistry |
| Annotation Date: |
2024-02-13 |
| Strength: |
Present |
| Sex: |
Not Specified |
| Emaps: |
EMAPS:1759724 |
| Pattern: |
Regionally restricted |
| Stage: |
TS24 |
| Assay Id: |
MGI:7581990 |
| Age: |
embryonic day 16.5 |
| Image: |
1B E16.5 |
| Note: |
Partial overlap of expression with Prdm16 was noted in the region of inner supporting cells. |
| Specimen Label: |
1B E16.5 |
| Detected: |
true |
| Specimen Num: |
4 |
|
•
•
•
•
•
|
| GXD Expression |
| Probe: |
MGI:7581887 |
| Assay Type: |
Immunohistochemistry |
| Annotation Date: |
2024-02-13 |
| Strength: |
Present |
| Sex: |
Not Specified |
| Emaps: |
EMAPS:1759726 |
| Pattern: |
Regionally restricted |
| Stage: |
TS26 |
| Assay Id: |
MGI:7581990 |
| Age: |
embryonic day 18.5 |
| Image: |
1B E18.5 |
| Note: |
Partial overlap of expression with Prdm16 was noted in the region of inner supporting cells. |
| Specimen Label: |
1B E18.5 |
| Detected: |
true |
| Specimen Num: |
5 |
|
•
•
•
•
•
|
| GXD Expression |
| Probe: |
MGI:7581887 |
| Assay Type: |
Immunohistochemistry |
| Annotation Date: |
2024-02-13 |
| Strength: |
Present |
| Sex: |
Not Specified |
| Emaps: |
EMAPS:1759727 |
| Pattern: |
Regionally restricted |
| Stage: |
TS27 |
| Assay Id: |
MGI:7581990 |
| Age: |
postnatal day 0 |
| Image: |
1B P0 |
| Note: |
Partial overlap of expression with Prdm16 was noted in the region of inner supporting cells. |
| Specimen Label: |
1B P0 |
| Detected: |
true |
| Specimen Num: |
6 |
|
•
•
•
•
•
|
| GXD Expression |
| Probe: |
MGI:7581887 |
| Assay Type: |
Immunohistochemistry |
| Annotation Date: |
2024-02-13 |
| Strength: |
Present |
| Sex: |
Not Specified |
| Emaps: |
EMAPS:1759727 |
| Pattern: |
Regionally restricted |
| Stage: |
TS27 |
| Assay Id: |
MGI:7581990 |
| Age: |
postnatal day 3 |
| Image: |
1B P3 |
| Note: |
Partial overlap of expression with Prdm16 was noted in the region of inner supporting cells. |
| Specimen Label: |
1B P3 |
| Detected: |
true |
| Specimen Num: |
7 |
|
•
•
•
•
•
|
| GXD Expression |
| Probe: |
MGI:7581887 |
| Assay Type: |
Immunohistochemistry |
| Annotation Date: |
2024-02-13 |
| Strength: |
Present |
| Sex: |
Not Specified |
| Emaps: |
EMAPS:1759728 |
| Pattern: |
Regionally restricted |
| Stage: |
TS28 |
| Assay Id: |
MGI:7581990 |
| Age: |
postnatal day 7 |
| Image: |
1B P7 |
| Note: |
Partial overlap of expression with Prdm16 was noted in the region of inner supporting cells. |
| Specimen Label: |
1B P7 |
| Detected: |
true |
| Specimen Num: |
8 |
|
•
•
•
•
•
|
| GXD Expression |
| Probe: |
MGI:7384695 |
| Assay Type: |
Immunohistochemistry |
| Annotation Date: |
2022-11-18 |
| Strength: |
Present |
| Sex: |
Not Specified |
| Emaps: |
EMAPS:1617720 |
| Pattern: |
Regionally restricted |
| Stage: |
TS20 |
| Assay Id: |
MGI:7384935 |
| Age: |
embryonic day 12.5 |
| Image: |
2I |
| Note: |
Expression in mesenchyme lateral to epaxial myotome, colocalized with Prdm16 expression. |
| Specimen Label: |
2I |
| Detected: |
true |
| Specimen Num: |
9 |
|
•
•
•
•
•
|
| Allele |
| Name: |
PR domain containing 16; endonuclease-mediated mutation 1, Shanghai Model Organisms Center |
| Allele Type: |
Endonuclease-mediated |
| Attribute String: |
Conditional ready, No functional change |
|
•
•
•
•
•
|
| Publication |
| First Author: |
Ivanochko D |
| Year: |
2018 |
| Journal: |
Nucleic Acids Res |
| Title: |
Direct interaction between the PRDM3 and PRDM16 tumor suppressors and the NuRD chromatin remodeling complex. |
|
|
|
|
•
•
•
•
•
|
| Publication |
| First Author: |
Svensson KJ |
| Year: |
2016 |
| Journal: |
Cell Metab |
| Title: |
A Secreted Slit2 Fragment Regulates Adipose Tissue Thermogenesis and Metabolic Function. |
| Volume: |
23 |
| Issue: |
3 |
| Pages: |
454-66 |
|
•
•
•
•
•
|
| Strain |
| Attribute String: |
coisogenic, endonuclease-mediated mutation, mutant strain |
|
•
•
•
•
•
|
| Allele |
| Name: |
PR domain containing 16; targeted mutation 1.1, Bryan C Bjork |
| Allele Type: |
Targeted |
| Attribute String: |
Conditional ready, Reporter |
|
•
•
•
•
•
|
| Protein Domain |
| Type: |
Domain |
| Description: |
This entry represents the PR/SET domain found in PR domain zinc finger protein 16 (PRDM16, also known as MEL1). PRDM16 and PRDM3 share protein sequences similarities and have functions in hematopoietic and neuronal stem cells and in adipose tissue differentiation. They also act as oncoproteins (Mel1 and Evi1) involved in translocation-induced leukemia. PRDM3 and PRDM16 are H3K9me1 methyltransferases required for mammalian heterochromatin integrity [, , ].The PRDM family members are characterised by the presence of a N-terminal PR (PRDI-BF1 and RIZ1 homology) domain followed by multiple zinc fingers which confer DNA binding activity. PR domains are only distantly related to the classical SET methyltransferase domains []. They are involved in epigenetic regulation of gene expression through their intrinsic histone methyltransferase activity or via interactions with other chromatin modifying enzymes []. |
|
•
•
•
•
•
|
| Protein Domain |
| Type: |
Domain |
| Description: |
This entry represents the PR/SET domain found in PR domain zinc finger protein 3 (PRDM3, also known as MECOM or EVI-1). PRDM3 and PRDM16 share protein sequences similarities and have functions in hematopoietic and neuronal stem cells and in adipose tissue differentiation. They also act as oncoproteins (Mel1 and Evi1) involved in translocation-induced leukemia. PRDM3 and PRDM16 are H3K9me1 methyltransferases required for mammalian heterochromatin integrity [].The PRDM family members are characterised by the presence of a N-terminal PR (PRDI-BF1 and RIZ1 homology) domain followed by multiple zinc fingers which confer DNA binding activity. PR domains are only distantly related to the classical SET methyltransferase domains []. They are involved in epigenetic regulation of gene expression through their intrinsic histone methyltransferase activity or via interactions with other chromatin modifying enzymes []. |
|
•
•
•
•
•
|
| HT Experiment |
|
| Experiment Type: |
RNA-Seq |
| Study Type: |
WT vs. Mutant |
| Source: |
GEO |
|
•
•
•
•
•
|
| HT Experiment |
|
| Experiment Type: |
RNA-Seq |
| Study Type: |
WT vs. Mutant |
| Source: |
GEO |
|
•
•
•
•
•
|
| HT Experiment |
|
| Experiment Type: |
RNA-Seq |
| Study Type: |
WT vs. Mutant |
| Source: |
ArrayExpress |
|
•
•
•
•
•
|
| Publication |
| First Author: |
Choi MC |
| Year: |
2014 |
| Journal: |
EMBO Rep |
| Title: |
HDAC4 promotes Pax7-dependent satellite cell activation and muscle regeneration. |
| Volume: |
15 |
| Issue: |
11 |
| Pages: |
1175-83 |
|
•
•
•
•
•
|
| Publication |
| First Author: |
Ikeda K |
| Year: |
2017 |
| Journal: |
Nat Med |
| Title: |
UCP1-independent signaling involving SERCA2b-mediated calcium cycling regulates beige fat thermogenesis and systemic glucose homeostasis. |
| Volume: |
23 |
| Issue: |
12 |
| Pages: |
1454-1465 |
|
•
•
•
•
•
|
| Publication |
| First Author: |
Kong X |
| Year: |
2014 |
| Journal: |
Cell |
| Title: |
IRF4 is a key thermogenic transcriptional partner of PGC-1α. |
| Volume: |
158 |
| Issue: |
1 |
| Pages: |
69-83 |
|
•
•
•
•
•
|
| Publication |
| First Author: |
Li F |
| Year: |
2021 |
| Journal: |
Nat Commun |
| Title: |
Epigenetic interaction between UTX and DNMT1 regulates diet-induced myogenic remodeling in brown fat. |
| Volume: |
12 |
| Issue: |
1 |
| Pages: |
6838 |
|
•
•
•
•
•
|
| Publication |
| First Author: |
Derecka M |
| Year: |
2012 |
| Journal: |
Cell Metab |
| Title: |
Tyk2 and Stat3 regulate brown adipose tissue differentiation and obesity. |
| Volume: |
16 |
| Issue: |
6 |
| Pages: |
814-24 |
|
•
•
•
•
•
|
| Publication |
| First Author: |
Qiang L |
| Year: |
2012 |
| Journal: |
Cell |
| Title: |
Brown remodeling of white adipose tissue by SirT1-dependent deacetylation of Pparγ. |
| Volume: |
150 |
| Issue: |
3 |
| Pages: |
620-32 |
|
•
•
•
•
•
|
| Publication |
| First Author: |
An Y |
| Year: |
2017 |
| Journal: |
Dev Cell |
| Title: |
A Molecular Switch Regulating Cell Fate Choice between Muscle Progenitor Cells and Brown Adipocytes. |
| Volume: |
41 |
| Issue: |
4 |
| Pages: |
382-391.e5 |
|
•
•
•
•
•
|
| Publication |
| First Author: |
Long JZ |
| Year: |
2014 |
| Journal: |
Cell Metab |
| Title: |
A smooth muscle-like origin for beige adipocytes. |
| Volume: |
19 |
| Issue: |
5 |
| Pages: |
810-20 |
|
•
•
•
•
•
|
| Publication |
| First Author: |
Shao M |
| Year: |
2016 |
| Journal: |
Cell Metab |
| Title: |
Zfp423 Maintains White Adipocyte Identity through Suppression of the Beige Cell Thermogenic Gene Program. |
| Volume: |
23 |
| Issue: |
6 |
| Pages: |
1167-1184 |
|
•
•
•
•
•
|
| Publication |
| First Author: |
Shuai L |
| Year: |
2019 |
| Journal: |
Diabetes |
| Title: |
SIRT5 Regulates Brown Adipocyte Differentiation and Browning of Subcutaneous White Adipose Tissue. |
| Volume: |
68 |
| Issue: |
7 |
| Pages: |
1449-1461 |
|
•
•
•
•
•
|
| Publication |
| First Author: |
Feuermann Y |
| Year: |
2013 |
| Journal: |
RNA Biol |
| Title: |
MiR-193b and miR-365-1 are not required for the development and function of brown fat in the mouse. |
| Volume: |
10 |
| Issue: |
12 |
| Pages: |
1807-14 |
|
•
•
•
•
•
|
| Publication |
| First Author: |
Zeng X |
| Year: |
2016 |
| Journal: |
Genes Dev |
| Title: |
Lysine-specific demethylase 1 promotes brown adipose tissue thermogenesis via repressing glucocorticoid activation. |
| Volume: |
30 |
| Issue: |
16 |
| Pages: |
1822-36 |
|
•
•
•
•
•
|
| Publication |
| First Author: |
Ortega-Molina A |
| Year: |
2012 |
| Journal: |
Cell Metab |
| Title: |
Pten positively regulates brown adipose function, energy expenditure, and longevity. |
| Volume: |
15 |
| Issue: |
3 |
| Pages: |
382-94 |
|
•
•
•
•
•
|
| Publication |
| First Author: |
Thoren LA |
| Year: |
2013 |
| Journal: |
Stem Cell Res |
| Title: |
PRDM11 is dispensable for the maintenance and function of hematopoietic stem and progenitor cells. |
| Volume: |
11 |
| Issue: |
3 |
| Pages: |
1129-36 |
|
•
•
•
•
•
|
| Publication |
| First Author: |
Ye B |
| Year: |
2020 |
| Journal: |
EMBO J |
| Title: |
The chromatin remodeler SRCAP promotes self-renewal of intestinal stem cells. |
| Volume: |
39 |
| Issue: |
13 |
| Pages: |
e103786 |
|
•
•
•
•
•
|
| Publication |
| First Author: |
Ng Y |
| Year: |
2017 |
| Journal: |
Exp Mol Med |
| Title: |
HOXC10 suppresses browning of white adipose tissues. |
| Volume: |
49 |
| Issue: |
2 |
| Pages: |
e292 |
|
•
•
•
•
•
|
| Publication |
| First Author: |
Farmer SR |
| Year: |
2008 |
| Journal: |
Genes Dev |
| Title: |
Molecular determinants of brown adipocyte formation and function. |
| Volume: |
22 |
| Issue: |
10 |
| Pages: |
1269-75 |
|
•
•
•
•
•
|
| Publication |
| First Author: |
De Sousa M |
| Year: |
2014 |
| Journal: |
Stem Cells |
| Title: |
p107 is a crucial regulator for determining the adipocyte lineage fate choices of stem cells. |
| Volume: |
32 |
| Issue: |
5 |
| Pages: |
1323-36 |
|
•
•
•
•
•
|
| Publication |
| First Author: |
Kong X |
| Year: |
2015 |
| Journal: |
Diabetes |
| Title: |
Glucocorticoids transcriptionally regulate miR-27b expression promoting body fat accumulation via suppressing the browning of white adipose tissue. |
| Volume: |
64 |
| Issue: |
2 |
| Pages: |
393-404 |
|
•
•
•
•
•
|
| Publication |
| First Author: |
Higa R |
| Year: |
2018 |
| Journal: |
Mol Cell Endocrinol |
| Title: |
CD105 maintains the thermogenic program of beige adipocytes by regulating Smad2 signaling. |
| Volume: |
474 |
|
| Pages: |
184-193 |
|
•
•
•
•
•
|
| Publication |
| First Author: |
Huang X |
| Year: |
2023 |
| Journal: |
Nat Commun |
| Title: |
Transcriptional repression of beige fat innervation via a YAP/TAZ-S100B axis. |
| Volume: |
14 |
| Issue: |
1 |
| Pages: |
7102 |
|
•
•
•
•
•
|
| HT Experiment |
| Series Id: |
GSE22693 |
| Experiment Type: |
transcription profiling by array |
| Study Type: |
WT vs. Mutant |
| Source: |
ArrayExpress |
|
•
•
•
•
•
|
| Publication |
| First Author: |
Bi P |
| Year: |
2014 |
| Journal: |
Nat Med |
| Title: |
Inhibition of Notch signaling promotes browning of white adipose tissue and ameliorates obesity. |
| Volume: |
20 |
| Issue: |
8 |
| Pages: |
911-8 |
|
•
•
•
•
•
|
| Publication |
| First Author: |
Sun L |
| Year: |
2011 |
| Journal: |
Nat Cell Biol |
| Title: |
Mir193b-365 is essential for brown fat differentiation. |
| Volume: |
13 |
| Issue: |
8 |
| Pages: |
958-65 |
|
•
•
•
•
•
|
| Publication |
| First Author: |
Lau P |
| Year: |
2015 |
| Journal: |
Am J Physiol Endocrinol Metab |
| Title: |
Rorα deficiency and decreased adiposity are associated with induction of thermogenic gene expression in subcutaneous white adipose and brown adipose tissue. |
| Volume: |
308 |
| Issue: |
2 |
| Pages: |
E159-71 |
|
•
•
•
•
•
|
| Publication |
| First Author: |
Waldén TB |
| Year: |
2010 |
| Journal: |
Biochem Biophys Res Commun |
| Title: |
PPARalpha does not suppress muscle-associated gene expression in brown adipocytes but does influence expression of factors that fingerprint the brown adipocyte. |
| Volume: |
397 |
| Issue: |
2 |
| Pages: |
146-51 |
|
•
•
•
•
•
|
| Publication |
| First Author: |
Liu W |
| Year: |
2013 |
| Journal: |
PLoS Genet |
| Title: |
miR-133a regulates adipocyte browning in vivo. |
| Volume: |
9 |
| Issue: |
7 |
| Pages: |
e1003626 |
|
•
•
•
•
•
|
| Publication |
| First Author: |
Chae SA |
| Year: |
2023 |
| Journal: |
J Physiol |
| Title: |
Exercise improves homeostasis of the intestinal epithelium by activation of apelin receptor-AMP-activated protein kinase signalling. |
| Volume: |
601 |
| Issue: |
12 |
| Pages: |
2371-2389 |
|
•
•
•
•
•
|
| Publication |
| First Author: |
Chou CF |
| Year: |
2014 |
| Journal: |
Diabetes |
| Title: |
KSRP ablation enhances brown fat gene program in white adipose tissue through reduced miR-150 expression. |
| Volume: |
63 |
| Issue: |
9 |
| Pages: |
2949-61 |
|
•
•
•
•
•
|
| Publication |
| First Author: |
Zhou Y |
| Year: |
2014 |
| Journal: |
Biochem Biophys Res Commun |
| Title: |
The formation of brown adipose tissue induced by transgenic over-expression of PPARγ2. |
| Volume: |
446 |
| Issue: |
4 |
| Pages: |
959-64 |
|
•
•
•
•
•
|
| Publication |
| First Author: |
Li Q |
| Year: |
2018 |
| Journal: |
Mol Cell Biol |
| Title: |
TCF7/TCF1 feedback controls osteocalcin signaling in brown adipocytes independent of canonical WNT/β-catenin pathway. |
|
|
|
|
•
•
•
•
•
|
| Publication |
| First Author: |
Sun W |
| Year: |
2019 |
| Journal: |
Mol Metab |
| Title: |
Tbx15 is required for adipocyte browning induced by adrenergic signaling pathway. |
| Volume: |
28 |
|
| Pages: |
48-57 |
|
•
•
•
•
•
|
| Publication |
| First Author: |
Bast-Habersbrunner A |
| Year: |
2021 |
| Journal: |
EMBO Rep |
| Title: |
LncRNA Ctcflos orchestrates transcription and alternative splicing in thermogenic adipogenesis. |
| Volume: |
22 |
| Issue: |
7 |
| Pages: |
e51289 |
|
•
•
•
•
•
|
| Publication |
| First Author: |
He H |
| Year: |
2023 |
| Journal: |
bioRxiv |
| Title: |
PRDM3/16 Regulate Chromatin Accessibility Required for NKX2-1 Mediated Alveolar Epithelial Differentiation and Function. |
|
|
|
|
•
•
•
•
•
|
| Publication |
| First Author: |
Auclair M |
| Year: |
2021 |
| Journal: |
Am J Physiol Endocrinol Metab |
| Title: |
Pharmacological modulation of RORα controls fat browning, adaptive thermogenesis, and body weight in mice. |
| Volume: |
320 |
| Issue: |
2 |
| Pages: |
E219-E233 |
|
•
•
•
•
•
|
| Publication |
| First Author: |
Kirschner KM |
| Year: |
2022 |
| Journal: |
Diabetologia |
| Title: |
Wt1 haploinsufficiency induces browning of epididymal fat and alleviates metabolic dysfunction in mice on high-fat diet. |
| Volume: |
65 |
| Issue: |
3 |
| Pages: |
528-540 |
|
•
•
•
•
•
|
| Publication |
| First Author: |
Rabhi N |
| Year: |
2018 |
| Journal: |
Mol Metab |
| Title: |
Cdkn2a deficiency promotes adipose tissue browning. |
| Volume: |
8 |
|
| Pages: |
65-76 |
|
•
•
•
•
•
|
| Publication |
| First Author: |
Tseng YH |
| Year: |
2008 |
| Journal: |
Nature |
| Title: |
New role of bone morphogenetic protein 7 in brown adipogenesis and energy expenditure. |
| Volume: |
454 |
| Issue: |
7207 |
| Pages: |
1000-4 |
|
•
•
•
•
•
|
| Publication |
| First Author: |
Sevillano J |
| Year: |
2019 |
| Journal: |
Diabetologia |
| Title: |
Pleiotrophin deletion alters glucose homeostasis, energy metabolism and brown fat thermogenic function in mice. |
| Volume: |
62 |
| Issue: |
1 |
| Pages: |
123-135 |
|
•
•
•
•
•
|
| Publication |
| First Author: |
Ringholm S |
| Year: |
2013 |
| Journal: |
PLoS One |
| Title: |
PGC-1α is required for exercise- and exercise training-induced UCP1 up-regulation in mouse white adipose tissue. |
| Volume: |
8 |
| Issue: |
5 |
| Pages: |
e64123 |
|
•
•
•
•
•
|
| Publication |
| First Author: |
Shen H |
| Year: |
2022 |
| Journal: |
Theranostics |
| Title: |
SOX4 promotes beige adipocyte-mediated adaptive thermogenesis by facilitating PRDM16-PPARγ complex. |
| Volume: |
12 |
| Issue: |
18 |
| Pages: |
7699-7716 |
|
•
•
•
•
•
|
| Publication |
| First Author: |
Choi HR |
| Year: |
2013 |
| Journal: |
PLoS One |
| Title: |
Dual-specificity phosphatase 10 controls brown adipocyte differentiation by modulating the phosphorylation of p38 mitogen-activated protein kinase. |
| Volume: |
8 |
| Issue: |
8 |
| Pages: |
e72340 |
|
•
•
•
•
•
|
| Publication |
| First Author: |
Kodo K |
| Year: |
2017 |
| Journal: |
PLoS One |
| Title: |
Erythropoietin (EPO) ameliorates obesity and glucose homeostasis by promoting thermogenesis and endocrine function of classical brown adipose tissue (BAT) in diet-induced obese mice. |
| Volume: |
12 |
| Issue: |
3 |
| Pages: |
e0173661 |
|
•
•
•
•
•
|
| Publication |
| First Author: |
Wu H |
| Year: |
2013 |
| Journal: |
Cell Rep |
| Title: |
Molecular basis for the regulation of the H3K4 methyltransferase activity of PRDM9. |
| Volume: |
5 |
| Issue: |
1 |
| Pages: |
13-20 |
|
•
•
•
•
•
|
| Publication |
| First Author: |
Casamassimi A |
| Year: |
2020 |
| Journal: |
Int J Mol Sci |
| Title: |
Multifaceted Role of PRDM Proteins in Human Cancer. |
| Volume: |
21 |
| Issue: |
7 |
|
|
•
•
•
•
•
|
| Publication |
| First Author: |
Li D |
| Year: |
2010 |
| Journal: |
BMC Genomics |
| Title: |
Regulation of gene expression by FSP27 in white and brown adipose tissue. |
| Volume: |
11 |
|
| Pages: |
446 |
|
•
•
•
•
•
|
| Protein |
| Organism: |
Mus musculus/domesticus |
| Length: |
820
 |
| Fragment?: |
false |
|
•
•
•
•
•
|
| Publication |
| First Author: |
Okazaki N |
| Year: |
2004 |
| Journal: |
DNA Res |
| Title: |
Prediction of the coding sequences of mouse homologues of KIAA gene: IV. The complete nucleotide sequences of 500 mouse KIAA-homologous cDNAs identified by screening of terminal sequences of cDNA clones randomly sampled from size-fractionated libraries. |
| Volume: |
11 |
| Issue: |
3 |
| Pages: |
205-18 |
|
•
•
•
•
•
|
| Publication |
| First Author: |
MGD Nomenclature Committee |
| Year: |
1995 |
|
| Title: |
Nomenclature Committee Use |
|
|
|
|
•
•
•
•
•
|
| Publication |
| First Author: |
Mouse Genome Informatics and VEGA Genome Database Project |
| Year: |
2006 |
| Journal: |
Database Release |
| Title: |
Collaboration to Associate VEGA (Vertebrate Genome Annotation) Mouse Gene Models with MGI Markers |
|
|
|
|
•
•
•
•
•
|
| Publication |
| First Author: |
Mouse Genome Informatics Scientific Curators |
| Year: |
2002 |
|
| Title: |
Function or Process or Component Unknown following Literature Review |
|
|
|
|
•
•
•
•
•
|
| Publication |
| First Author: |
Gerhard DS |
| Year: |
2004 |
| Journal: |
Genome Res |
| Title: |
The status, quality, and expansion of the NIH full-length cDNA project: the Mammalian Gene Collection (MGC). |
| Volume: |
14 |
| Issue: |
10B |
| Pages: |
2121-7 |
|
•
•
•
•
•
|
| Publication |
| First Author: |
Church DM |
| Year: |
2009 |
| Journal: |
PLoS Biol |
| Title: |
Lineage-specific biology revealed by a finished genome assembly of the mouse. |
| Volume: |
7 |
| Issue: |
5 |
| Pages: |
e1000112 |
|
•
•
•
•
•
|