Browse our Snail Homolog 1 (Drosophila) (SNAI1) ELISA Kits

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Snail Homolog 1 (Drosophila) ELISA Kits (SNAI1)
On are 9 Snail Homolog 1 (Drosophila) (SNAI1) ELISA Kits from 6 different suppliers available. Additionally we are shipping Snail Homolog 1 (Drosophila) Antibodies (146) and Snail Homolog 1 (Drosophila) Proteins (7) and many more products for this protein. A total of 179 Snail Homolog 1 (Drosophila) products are currently listed.
AI194338, BG:DS01845.1, br28, br29, CG3956, dJ710H13.1, Dmel\\CG3956, l(2)35Db, l(2)br28, l(2)br29, l(3)br28, l35Db, Sco, SLUGH2, sn, sna, Sna1, SNAH, Snai, SNAI1, Snail, Snail1, xSna, Xsnail
list all ELISA KIts Gene Name GeneID UniProt
SNAI1 6615 O95863
Rat SNAI1 SNAI1 116490  
SNAI1 20613 Q02085

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Top referenced Snail Homolog 1 (Drosophila) ELISA Kits

  1. Human SNAI1 ELISA Kit for Sandwich ELISA - ABIN1118176 : Abdelmageed, El-Naga, El-Demerdash, Elmazar: Indole-3- carbinol enhances sorafenib cytotoxicity in hepatocellular carcinoma cells: A mechanistic study. in Scientific reports 2016 (PubMed)

More ELISA Kits for Snail Homolog 1 (Drosophila) Interaction Partners

Fruit Fly (Drosophila melanogaster) Snail Homolog 1 (Drosophila) (SNAI1) interaction partners

  1. Disruption of Snail expression in follicle stem cells compromises proliferation, but not maintenance. FSCs with excessive Snail expression had increased proliferation and lifespan, accompanied by a moderate decrease inE-cadherin expression (required for adhesion of FSCs to their niche) at the junction between their adjacent cells, indicating a conserved role of Snail in E-cadherin (show CDH1 ELISA Kits) inhibition.

  2. during gastrulation of Drosophila embryos, Sna expression downregulates polarity protein Baz which in turn results in junction disassembly at protein levels.

  3. evidence for mechanosensitivity of cell-cell junctions and implications that myosin-mediated tension can prevent Snail-driven Eepithelial-mesenchymal transitions

  4. Snail can potentiate enhancer activation by collaborating with different activators, providing a new mechanism by which Snail regulates development.

  5. Rapid transcription kinetics and negative autoregulation are responsible for the remarkable homogeneity of snail expression and the coordination of mesoderm invagination.

  6. Study shows that Sna represses transcription of pbl in the mesoderm primordium of D. melanogaster via one or more Sna-binding sites, which are conserved among species of the Drosophila genus, but not in the mosquito, correlating with the different modes of gastrulation in the different genuses.

  7. Complex interactions between cis (show CISH ELISA Kits)-regulatory modules in native conformation are critical for Drosophila snail expression.

  8. The Snail repressor positions Notch (show NOTCH1 ELISA Kits) signaling in the Drosophila embryo.

  9. results show that Sna has a positive regulatory function on sim (show SIM2 ELISA Kits) expression in the presumptive mesectoderm; this positive effect of Sna depends on the Su(H (show RBPJ ELISA Kits))-binding sites within the sim (show SIM2 ELISA Kits) promoter, suggesting that Sna regulates Notch (show NOTCH1 ELISA Kits) signaling

  10. snail is required for Drosophila gastrulation and is not replaceable by Escargot or Worniu.

Xenopus laevis Snail Homolog 1 (Drosophila) (SNAI1) interaction partners

  1. The transcription factor Snail1 is essential for tissue separation, enabling paraxial protocadherin (PAPC (show PCDH8 ELISA Kits)) to promote tissue separation through novel functions.

  2. Interaction with Snail1/2, and Twist function more generally, is regulated by GSK-3-beta (show GSK3b ELISA Kits)-mediated phosphorylation of conserved sites in the WR domain.

  3. the same E3 ubiquitin ligase known to regulate Snail family proteins, Partner of paired (Ppa (show FBXL14 ELISA Kits)), also controlled Twist stability and did so in a manner dependent on the Twist WR-rich domain

Human Snail Homolog 1 (Drosophila) (SNAI1) interaction partners

  1. The expression of the transcription factor Snail is strongly associated with longer disease-free and overall survival.

  2. the role of Snail1 in tumor invasion is not limited to epithelial-to-mesenchymal transition (EMT (show ITK ELISA Kits)), but it is also dependent on its activity in stromal fibroblasts.

  3. Increased ERK2 activity leads to nuclear accumulation of SNAIL1, and, thus, avoidance of cytosolic proteasome degradation. SNAIL1 also influences the level and activity of YAP1 in CAFs exposed to a stiff matrix.

  4. These observations suggest a crucial role for cancer-associated fibroblasts and fibroblast growth factor-1 (show FGF1 ELISA Kits)/fibroblast growth factor receptor 4 (show FGFR4 ELISA Kits) signaling in the progression of ovarian cancer. the expression level of Snail1 and MMP3 (show MMP3 ELISA Kits) was reduced, while the expression level of E-cadherin (show CDH1 ELISA Kits) increased

  5. Data suggest that silencing Snail decreases the malignant behaviors of lung cancer cells by reversing epithelial-to-mesenchymal transition processes and causing cell cycle defects.

  6. this study uncovered the mechanism through which mithramycin inhibits epithelial-to-mesenchymal transition and invasion in salivary adenoid cystic carcinoma cell lines, namely, via downregulating specificity protein 1 (show SP1 ELISA Kits) and SNAI1 expression, which suggests mithramycin may be a promising therapeutic option for salivary adenoid cystic carcinoma.

  7. These results suggest that polymorphisms in TGFB1 (show TGFB1 ELISA Kits), TGFBR1 (show TGFBR1 ELISA Kits), SNAI1 and TWIST1 (show TWIST1 ELISA Kits) may modulate endometrial cancer susceptibility, both separately and corporately.

  8. The finding of down-regulation of the miR (show MLXIP ELISA Kits)-200 family and up-regulation of transcription repressors Snail and Slug (show SNAI2 ELISA Kits) supports the postulated role of epithelial-mesenchymal transition in the pathogenesis of fibrosis in inflammatory bowel diseases.

  9. show that expression of EPHB2 (show EPHB2 ELISA Kits) and SNAIL1 - an inducer of epithelial-mesenchymal transition (EMT (show ITK ELISA Kits)) - is anti-correlated in colorectal cancer cell lines and tumors

  10. the existence of a dynamic negative feedback loop in the regulation of IGF1R (show IGF1R ELISA Kits) and miR (show MLXIP ELISA Kits)-493 mediated via Snail, is reported.

Mouse (Murine) Snail Homolog 1 (Drosophila) (SNAI1) interaction partners

  1. both Snail and Slug (show SNAI2 ELISA Kits) are able to form binary complexes with either YAP (show YAP1 ELISA Kits) or TAZ (show TAZ ELISA Kits) that, together, control YAP (show YAP1 ELISA Kits)/TAZ (show TAZ ELISA Kits) transcriptional activity and function throughout mouse development.

  2. results demonstrate that skeletal stem/stromal cell mobilize Snail/Slug (show SNAI2 ELISA Kits)-YAP (show YAP1 ELISA Kits)/TAZ (show TAZ ELISA Kits) complexes to control stem cell function

  3. these results might suggest that calcineurin inhibitor (show RCAN1 ELISA Kits)-induced tubular SNAI1 protein cytoplasmic accumulation, possibly because of impaired SNAI1 proteasomal degradation and nuclear translocation, might be a sign of a diseased profibrotic epithelial phenotype.

  4. Snail1 as a molecular bypass that suppresses the anti-proliferative and pro-apoptotic effects exerted by wild-type p53 (show TP53 ELISA Kits) in breast cancer

  5. Snail1 deficiency modified the phenotype of pancreatic tumors .

  6. miR (show MLXIP ELISA Kits)-200 promotes the mesenchymal to epithelial transition by suppressing multiple members of the Zeb2 (show ZEB2 ELISA Kits) and Snail1 transcriptional repressor complexes, such as Smad2 (show SMAD2 ELISA Kits) and Smad5 (show SMAD5 ELISA Kits).

  7. show that Snail1-induced fibrosis can be reversed in vivo and that obstructive nephropathy can be therapeutically ameliorated in mice by targeting Snail1 expression

  8. Results suggest that Snai1 is a key factor that triggers ESCs (show NR2E3 ELISA Kits) exit from the pluripotency state and initiate their differentiation processes.

  9. During embryonic stem cell differentiation, an endogenous Wnt (show WNT2 ELISA Kits)-mediated burst in Snail1 expression regulates neuroectodermal fate while playing a role in epiblast stem cell exit and the consequent lineage fate decisions that define mesoderm commitment.

  10. The Snail transcription factor regulates the numbers of neural precursor cells and newborn neurons throughout mammalian life.

Snail Homolog 1 (Drosophila) (SNAI1) Antigen Profile

Antigen Summary

The Drosophila embryonic protein snail is a zinc finger transcriptional repressor which downregulates the expression of ectodermal genes within the mesoderm. The nuclear protein encoded by this gene is structurally similar to the Drosophila snail protein, and is also thought to be critical for mesoderm formation in the developing embryo. At least two variants of a similar processed pseudogene have been found on chromosome 2.

Alternative names and synonyms associated with Snail Homolog 1 (Drosophila) (SNAI1)

  • snail homolog 1 (Drosophila) (SNAI1) Elisa Kit
  • snail 1 homolog (LOC100350709) Elisa Kit
  • snail 1 homolog (LOC100352102) Elisa Kit
  • snail (sna) Elisa Kit
  • zinc-finger transcription factor Snail (snail) Elisa Kit
  • snail family zinc finger 1 (snai1) Elisa Kit
  • snail protein (Snail) Elisa Kit
  • transcription factor protein (snail) Elisa Kit
  • snail zinc finger protein (snail) Elisa Kit
  • snail family zinc finger 1 (SNAI1) Elisa Kit
  • snail family zinc finger 1 (Snai1) Elisa Kit
  • snail homolog 1 (Drosophila) (Snai1) Elisa Kit
  • AI194338 Elisa Kit
  • BG:DS01845.1 Elisa Kit
  • br28 Elisa Kit
  • br29 Elisa Kit
  • CG3956 Elisa Kit
  • dJ710H13.1 Elisa Kit
  • Dmel\\CG3956 Elisa Kit
  • l(2)35Db Elisa Kit
  • l(2)br28 Elisa Kit
  • l(2)br29 Elisa Kit
  • l(3)br28 Elisa Kit
  • l35Db Elisa Kit
  • Sco Elisa Kit
  • SLUGH2 Elisa Kit
  • sn Elisa Kit
  • sna Elisa Kit
  • Sna1 Elisa Kit
  • SNAH Elisa Kit
  • Snai Elisa Kit
  • SNAI1 Elisa Kit
  • Snail Elisa Kit
  • Snail1 Elisa Kit
  • xSna Elisa Kit
  • Xsnail Elisa Kit

Protein level used designations for SNAI1

snail homolog 1 , snail like protein , Protein snail-like protein 1 , snail homolog 1 (Drosophila) , snail 1 homolog , CG3956-PA , scutoid , sna-PA , zinc-finger transcription factor Snail , protein Xsnail , protein snail homolog Sna , protein xSna , snail protein , zinc finger protein with snail domain similar to escargot , transcription factor protein , snail zinc finger protein , snail-like protein 1 , protein sna , protein snail homolog 1 , snail 1 zinc finger protein , snail 1, zinc finger protein , zinc finger protein SNAI1

396047 Gallus gallus
702353 Macaca mulatta
745644 Pan troglodytes
100127224 Ovis aries
100350709 Oryctolagus cuniculus
100352102 Oryctolagus cuniculus
34908 Drosophila melanogaster
378469 Strongylocentrotus purpuratus
379615 Xenopus laevis
410464 Apis mellifera
778762 Ciona intestinalis
100303552 Saccoglossus kowalevskii
100029017 Monodelphis domestica
6615 Homo sapiens
116490 Rattus norvegicus
20613 Mus musculus
485924 Canis lupus familiaris
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