DEAD Box Protein 4 (DDX4) Kits ELISA

DEAD box proteins, characterized by the conserved motif Asp-Glu-Ala-Asp (DEAD), are putative RNA helicases. De plus, nous expédions DDX4 Anticorps (111) et DDX4 Protéines (6) et beaucoup plus de produits pour cette protéine.

list all ELISA KIts Gène GeneID UniProt
DDX4 54514 Q9NQI0
Anti-Souris DDX4 DDX4 13206 Q61496
DDX4 310090 Q64060
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Top DDX4 Kits ELISA sur anticorps-enligne.fr

Showing 8 out of 9 products:

Catalogue No. Reactivité Sensibilité Gamme Images Quantité Livraison Prix Détails
Lapin 0.1 ng/mL 1.0-25 ng/mL   96 Tests 15 to 18 Days
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Singe 0.1 ng/mL 1.0-25 ng/mL   96 Tests 15 to 18 Days
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Cobaye 0.1 ng/mL 1.0-25 ng/mL   96 Tests 15 to 18 Days
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Humain 0.1 ng/mL 1.0-25 ng/mL   96 Tests 15 to 18 Days
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Rat 0.1 ng/mL 0.5-10 ng/mL   96 Tests 15 to 18 Days
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Chien 0.1 ng/mL 1.0-25 ng/mL   96 Tests 15 to 18 Days
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Boeuf (Vache)
  96 Tests 15 to 18 Days
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Porc
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Plus Kits ELISA pour DDX4 partenaires d'interaction

Human DEAD Box Protein 4 (DDX4) interaction partners

  1. Described are adult ovarian cell populations. A fluorescence-activated cell sorting technique incorporating dual-detection of DDX4 with aldehyde dehydrogenase 1 (ALDH1) demonstrates the existence of two sub-populations of small DDX4-positive cells (approx. 7 microm diameter) with ALDH1 activity, distinguished by expression of differentially spliced DDX4 transcripts and of DAZL, a major regulator of germ cell differenti...

  2. Four sterility-related genes, including BOLL, DDX4, HORMAD1, and MAEL, were found to have increased methylation at CpGs of the promoter regions and decreased mRNA expressions in nonobstructive azoospermia and hypospermatogenesis (HS) testis and are believed to be associated with HS.

  3. positivity for DDX4 gene was detected in 17 of 39 males with nonobstructive azoospermia which was due to maturation arrest in 35.3% of cases, due to incomplete Sertoli cell only in 23.5% and due to complete Sertoli cell only in 41.2%.

  4. Results suggest that DDX4 positively regulates cell cycle progression of diverse somatic-derived blood cancer cells, implying its broad contributions to the cancer cell phenotype.

  5. DDX4 cell-free seminal mRNA was absent in 44% of Sertoli cell-only syndrome cases diagnosed by testicular histopathology, but present in all patients presenting with maturation arrest or hypospermatogenesis

  6. The 20-mer peptide (residues 228-247) of human DDX-4, an ATP-dependent RNA helicase known to regulate germ cell development, binds to a unique shallow binding surface on RanBPM formed by highly conserved loops on the surface of the beta-sheet with two aspartates on one end, a positive patch on the opposite end, and a tryptophan lining at the bottom of the surface.

  7. Data show that intrinsically disordered N terminus of DEAD-box RNA helicase Ddx4 forms organelles in HeLa cells and in vitro.

  8. this study reports the first analysis and comparison of the expression patterns and colocalization of DDX4 and CD133 in 59 ovarian cancer patients via tissue microarray and immunofluorescence analysis to identify the expression patterns and relationship of those two markers in ovarian cancer cells.

  9. Data suggest that VASA shows differential expression in ovary; in resting primordial follicle reserve in childhood/pre-puberty, VASA is associated with Balbiani's body space in germ cell; once follicle enters growing pool, VASA is undetectable.

  10. Vasa/Ddx4 gene can be involved in regulation of ground and primed states of pluripotency

  11. overexpression of VASA and or DAZL, in both embryonic and induced pluripotent stem cells promoted differentiation into primordial germ cells, and maturation and progression through meiosis was enhanced.

  12. Report the generation/characterization of embryonic stem cell lines carrying a VASA-pEGFP-1 reporter construct that expresses GFP in a population of differentiating cells showing expression of characteristic markers of primordial germ cells.

  13. marker for normal and malignant germ cells

  14. The expression of VASA mRNA and protein was significantly decreased in the sperm of oligozoospermic men.

  15. VASA showed a differential pattern of expression throughout the differentiation and proliferative phase and prophase I to finally associate with Balbiani's body in primordial and primary follicles.

  16. Over-expression of VASA abrogates the G2 checkpoint, induced by DNA damage, by down-regulating the expression of 14-3-3sigma. Results suggest that VASA may play a role in the progression of ovarian cancer or serve as a valuable marker of tumorigenesis.

  17. Highly methylated regions of the VASA gene are associated with maturation arrest phenotype in the testis.

Mouse (Murine) DEAD Box Protein 4 (DDX4) interaction partners

  1. BHR also decreased the mRNA level of MVH in the bone marrow, and increased mRNA and protein level of MVH in the ovary o fpremature ovarian failure mice

  2. Hgher expression levels of ~55-60 kDa MVH isoform in the ovaries were followed by the accumulations of preovulatory follicles.

  3. In mouse oocytes the mitochondrion-originated germinal body-like structures accumulate MVH protein.

  4. The results indicate the presence of a developmentally regulated mechanism in which Hat1 and p46 control the physiology of the chromatoid body by acetylation of MVH.

  5. Vasa/Ddx4 gene can be involved in regulation of ground and primed states of pluripotency

  6. SPSB1 and SPSB4 bind strongly to both Par-4 and VASA peptides.

  7. MVH plays crucial roles in the early phase of the ping-pong amplification cycle

  8. The RNA helicase Vasa is another essential protein in germline development and arginine methylation is conserved across phyla

  9. Data show that RanBPM and mouse vasa homolog (Mvh) are closely associated with perinuclear RNA-protein complexes and chromatoid bodies, and suggests a functional relationship between translational regulation and microtubule nucleation during meiosis.

  10. Dazl stimulates translation via the Mvh 3'-UTR. Dazl-mediated regulation of Mvh translation is crucial for mammalian spermatogenesis

Pig (Porcine) DEAD Box Protein 4 (DDX4) interaction partners

  1. These results suggest that DDX4 and c-kit are putative markers of undifferentiated spermatogonia in the prepubertal porcine testis.

  2. These results demonstrate that testicular cell-surface DDX4-immunoreactive cells are not germ cells and constitute a distinct subpopulation that is different from gonocytes.

  3. Porcine Vasa Homolog (pvh) is specifically expressed in germ cell lineages, and can be a useful marker for germ cell development in pigs.

Cow (Bovine) DEAD Box Protein 4 (DDX4) interaction partners

  1. Bone morphogenetic protein 4 and retinoic acid trigger bovine VASA homolog expression in differentiating bovine induced pluripotent stem cells.

  2. VASA was highly represented in the testis and the ovary, and still present in the oocyte from antral follicles.

  3. The expression of VASA in bovine fetuses is reported.

Xenopus laevis DEAD Box Protein 4 (DDX4) interaction partners

  1. The RNA helicase Vasa is another essential protein in germline development and arginine methylation is conserved across phyla

  2. XVLG1 protein in pPGC is not sufficient to increase the number of primordial germ cells in the tadpoles

  3. Xdsg protein in pPGCs may play an important role in the formation of PGCs by regulating the production of XVLG1 protein

DDX4 profil antigène

Antigen Summary

DEAD box proteins, characterized by the conserved motif Asp-Glu-Ala-Asp (DEAD), are putative RNA helicases. They are implicated in a number of cellular processes involving alteration of RNA secondary structure such as translation initiation, nuclear and mitochondrial splicing, and ribosome and spliceosome assembly. Based on their distribution patterns, some members of this family are believed to be involved in embryogenesis, spermatogenesis, and cellular growth and division. This gene encodes a DEAD box protein, which is a homolog of VASA proteins in Drosophila and several other species. The gene is specifically expressed in the germ cell lineage in both sexes and functions in germ cell development. Multiple transcript variants encoding different isoforms have been found for this gene.

Gene names and symbols associated with DEAD Box Protein 4 (DDX4) Kits ELISA

  • DEAD-box helicase 4 (DDX4) anticorps
  • DEAD (Asp-Glu-Ala-Asp) box polypeptide 4 (Ddx4) anticorps
  • DEAD-box helicase 4 (Ddx4) anticorps
  • DEAD-box helicase 4 L homeolog (ddx4.L) anticorps
  • AV206478 anticorps
  • Mvh anticorps
  • RVLG anticorps
  • vasa anticorps
  • vlg1 anticorps

Protein level used designations for DEAD Box Protein 4 (DDX4) Kits ELISA

DEAD box protein 4 , DEAD/H (Asp-Glu-Ala-Asp/His) box polypeptide 4 , probable ATP-dependent RNA helicase DDX4 , vasa homolog , D-E-A-D (aspartate-glutamate-alanine-aspartate) box polypeptide 4 , DEAD (aspartate-glutamate-alanine-aspartate) box polypeptide 4 , DEAD box polypeptide 4 , mvh / m'vasa , Cvh , vasa-like protein , putative ATP-dependent RNA helicase DDX4 , vasa-like gene protein , xVLG1

GENE ID SPECIES
54514 Homo sapiens
487211 Canis lupus familiaris
13206 Mus musculus
395447 Gallus gallus
431672 Sus scrofa
493725 Bos taurus
310090 Rattus norvegicus
398019 Xenopus laevis
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