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Myogenic Differentiation 1 (MYOD1) ELISA Kits

MYOD1 encodes a nuclear protein that belongs to the basic helix-loop-helix family of transcription factors and the myogenic factors subfamily. Additionally we are shipping Myogenic Differentiation 1 Antibodies (257) and Myogenic Differentiation 1 Proteins (10) and many more products for this protein.

list all ELISA KIts Gene Name GeneID UniProt
MYOD1 4654 P15172
MYOD1 17927 P10085
MYOD1 337868 Q02346
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Top Myogenic Differentiation 1 ELISA Kits at

Showing 6 out of 15 products:

Catalog No. Reactivity Sensitivity Range Images Quantity Supplier Delivery Price Details
Human 0.061 ng/mL 0.15-10 ng/mL 96 Tests Log in to see 9 to 11 Days
Rat 27 pg/mL 78.12-5000 pg/mL 96 Tests Log in to see 9 to 11 Days
Rabbit 1.0 pg/mL 250-5000 pg/mL   96 Tests Log in to see 11 to 13 Days
Mouse 1.0 pg/mL 250-5000 pg/mL   96 Tests Log in to see 11 to 13 Days
Guinea Pig 1.0 pg/mL 250-5000 pg/mL   96 Tests Log in to see 11 to 13 Days
Pigeon 46.875 pg/mL 78.125-5000 pg/mL   96 Tests Log in to see 9 to 16 Days

More ELISA Kits for Myogenic Differentiation 1 Interaction Partners

Horse (Equine) Myogenic Differentiation 1 (MYOD1) interaction partners

  1. SRF and its cofactor MYOCD (show MYOCD ELISA Kits) likely contribute to the hypertrophy of peripheral airway smooth muscle observed in equine asthmatic airways, while the remodeling of the central airways is more static or involves different transcription factors.

  2. Equine primary fibroblasts were transformed by lentiviral transduction of equine myogenic differentiation 1 into fusion-competent myoblasts.

Human Myogenic Differentiation 1 (MYOD1) interaction partners

  1. Data show that MeCP2 (show MECP2 ELISA Kits) promotes gastric cancer (GC) cell proliferation via FOXF1 (show FOXF1 ELISA Kits)-mediated Wnt5a (show WNT5A ELISA Kits)/beta-Catenin (show CTNNB1 ELISA Kits) signaling pathway, and suppresses GC cell apoptosis through MYOD1-mediated Caspase-3 (show CASP3 ELISA Kits) signaling pathway.

  2. Our results on Pax7 and MyoD protein expression suggest that proliferation and differentiation of skeletal muscle stem cells are affected in ALS patients, and the myogenic processes cannot overcome the denervation-induced wasting.

  3. The molecular pathogenesis of radiotherapy-induced muscle fibrosis involves the TGF-beta1 (show TGFB1 ELISA Kits) pathway and its repression of MyoD expression. Our results suggest a correlation between traditional swallow therapy /neuromuscular electrical stimulation combined therapy and the restoration of TGF-beta1 (show TGFB1 ELISA Kits)/MyoD homeostasis in cervical muscles.

  4. Unmethylated MYOD1 gene is associated with chemoradiation resistance in Invasive Cervical Carcinoma.

  5. We provide the first description of a human phenotype that appears to result from MYOD1 mutation. The presentation with Lethal fetal akinesia deformation sequence is consistent with a large body of data demonstrating that in the mouse, MyoD is a major controller of precursor cell commitment to the myogenic differentiation programme

  6. these results suggest that sarcoma metastasis can be partially controlled through Pax7 (show PAX7 ELISA Kits)/MyoD-dependent activation of miR (show MLXIP ELISA Kits)-182 and provide insight into the role that myogenic transcription factors have in sarcoma progression

  7. These observations demonstrated the first time that Wnt3a (show WNT3A ELISA Kits) can directly activate MyoD expression through targeting cis (show CISH ELISA Kits)-elements in the DE and the L fragment.

  8. Studies indicate that MyoD occupies multiple promoters that induce the transcription of genes vital for establishing the myogenic fate and is also implicated as a mediator of many chromatin modifying enzymes for their recruitment to myogenic enhancers.

  9. MUNC is not a classic cis (show CISH ELISA Kits)-acting enhancer RNA (e-RNA) acting exclusively by stimulating the neighboring MyoD gene

  10. MyoD acts to promote SC proliferation and transition of cells into differentiation, while myogenin (show MYOG ELISA Kits) is known to drive terminal differentiation

Mouse (Murine) Myogenic Differentiation 1 (MYOD1) interaction partners

  1. Data show that myoblast determination protein 1 (MyoD) acts partially through microRNA miR (show MLXIP ELISA Kits)-133 to suppress brown adipocyte cell fate.

  2. This evidence demonstrates that TBP2 (show Tbpl2 ELISA Kits) does not replace TBP (show TBP ELISA Kits) during muscle differentiation, as previously proposed, with limiting amounts of TFIID-TBP (show TBP ELISA Kits) being required to promote muscle-specific (show EIF3K ELISA Kits) gene expression

  3. established a model in which FHL3 (show FHL3 ELISA Kits) promotes the expression of MyHC 2a (show MYH2 ELISA Kits) through CREB (show CREB1 ELISA Kits)-mediated transcription and inhibits the expression of MyHC 1/slow by inhibiting MyoD transcription activity during myogenesis

  4. Transcription of the skeletal muscle program is achieved by the expression of MyoD, which binds to the same sites as Myf5 (show MYF5 ELISA Kits), indicating that each factor regulates distinct steps in gene initiation and transcription at a shared set of binding sites

  5. The large TBP (show TBP ELISA Kits) polyQ repeat decreases the association of MyoD with TBP (show TBP ELISA Kits) and DNA promoters and causes muscle degeneration in spinocerebellar ataxia (show USP14 ELISA Kits) 17 transgenic mice.

  6. results reveal a role for Six4 (show SIX4 ELISA Kits) during adult muscle regeneration and suggest a widespread mechanism of cooperation between Six4 (show SIX4 ELISA Kits) and MyoD.

  7. redirecting MyoD binding from MyoD private sites to NeuroD2 (show NEUROD2 ELISA Kits) private sites

  8. Jmjd2C (show KDM4C ELISA Kits) increases MyoD transcriptional activity to facilitate skeletal muscle differentiation by increasing MyoD stability through inhibiting G9a (show EHMT2 ELISA Kits)-dependent MyoD degradation.

  9. MyoD affects chromatin looping at CCCTC-binding factor (show CTCF ELISA Kits)-binding sites represents the first evidence that a differentiation factor regulates chromatin-loop dynamics

  10. MyoD differentially promotes activated and repressed chromatin structures at myogenic genes early after the onset of skeletal muscle differentiation in the developing mouse embryo.

Pig (Porcine) Myogenic Differentiation 1 (MYOD1) interaction partners

  1. Of the eight adult pig tissue types that were tested, the expression of Myf5 (show MYF5 ELISA Kits) and MyoD1 was highest in the muscle tissue.

  2. Single nucleotide polymorphisms in the MYOD1 and GDF8 (show MSTN ELISA Kits) genes are associated with genetic transcription during myogenesis in pigs.

  3. Therefore, this study demonstrated that the different regulatory adipogenic roles of MSTN (show MSTN ELISA Kits) in ADSCs and MSCs act by differentially regulating PPARgamma (show PPARG ELISA Kits) and MyoD expression.

  4. Therefore, the g.489C>T and g.1264C>A SNPs in MYOD1 may be meaningful DNA markers that can be used for improving important porcine economic traits.

  5. The total expression profile of MyoD and Pax7 (show PAX7 ELISA Kits) genes suggests that higher muscularity in Pietrain pigs is associated with the presence of a greater number of active satellite stem cells compared to other breeds.

  6. Exons and promoters are amplified and sequenced in the 5'UTR (show UTS2R ELISA Kits) region of this gene.

  7. Relative MYOD1 expression was not different, but MYOG (show MYOG ELISA Kits) expression was higher in the (ligated-tube)crowded group embryos.

  8. MYOD1 intron 1 DdeI polymorphism was not significantly associated with any meat quality traits tested

Cow (Bovine) Myogenic Differentiation 1 (MYOD1) interaction partners

  1. Transcript abundance for the muscle regulatory gene MYOD1 was lower in animals with more tender beef.

  2. Bos taurus MYF5 (show MYF5 ELISA Kits) activates MYF5 (show MYF5 ELISA Kits) and MYOD1 expression in cultured fibroblasts.

  3. results suggest that MyoD and Myf5 influence the MyHC isoform expression, although the effects are not decisive in specifying the phenotypes of adult muscles

  4. n conclusion, hypoxia stimulates the proliferation of satellite cells and promotes their myogenic differentiation with MyoD playing an important role

Zebrafish Myogenic Differentiation 1 (MYOD1) interaction partners

  1. Irxl1/Mkx (show MKX ELISA Kits) can repress myoD expression through direct binding to its promoter and may thus play a negative regulatory role in muscle differentiation.

  2. Myod in turn up-regulates cdkn1c (show CDKN1C ELISA Kits), thereby providing a positive feedback loop that switches myogenic cells to terminal differentiation

  3. Myf5 (show MYF5 ELISA Kits) and Myod function independently during cranial myogenesis.

Myogenic Differentiation 1 (MYOD1) Antigen Profile

Antigen Summary

This gene encodes a nuclear protein that belongs to the basic helix-loop-helix family of transcription factors and the myogenic factors subfamily. It regulates muscle cell differentiation by inducing cell cycle arrest, a prerequisite for myogenic initiation. The protein is also involved in muscle regeneration. It activates its own transcription which may stabilize commitment to myogenesis.

Gene names and symbols associated with MYOD1

  • myogenic differentiation 1 (myod1) antibody
  • myogenic differentiation 1 (MYOD1) antibody
  • myoblast determination protein 1 (myod1) antibody
  • MYOD protein (myod) antibody
  • myogenic factor MyoD1 (MyoD1) antibody
  • myogenic differentiation 1 (Myod1) antibody
  • AI503393 antibody
  • bHLHc1 antibody
  • etID309723.25 antibody
  • mf25 antibody
  • MUF3 antibody
  • MYF3 antibody
  • myod antibody
  • Myod-1 antibody
  • myod1 antibody
  • PUM antibody
  • wu:fb57a01 antibody
  • XMyoD antibody
  • XtmyoD antibody
  • zgc:136744 antibody

Protein level used designations for MYOD1

myogenic factor 3 , myogenic differentiation 1 , MyoD , myoblast determination protein 1 , MYOD protein , myogenic factor MyoD1 , MYOD1 homolog , myoblast determination protein 1 homolog , myogenic factor 1 , class C basic helix-loop-helix protein 1 , myf-3 , myogenic regulatory factor , myogenic differenciation 1, transcription activator , myogenic differenciation 1 , myoblast determination 1

394569 Xenopus (Silurana) tropicalis
451057 Pan troglodytes
611940 Canis lupus familiaris
696222 Macaca mulatta
100071803 Equus caballus
100303674 Meleagris gallopavo
100136534 Salmo salar
100136773 Oncorhynchus mykiss
100534488 Oreochromis niloticus
374048 Gallus gallus
4654 Homo sapiens
17927 Mus musculus
337868 Rattus norvegicus
101097667 Felis catus
407604 Sus scrofa
281938 Bos taurus
443405 Ovis aries
30513 Danio rerio
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