DDX3 (DDX3X) (NM_001356) Human Mass Spec Standard

CAT#: PH304171

DDX3X MS Standard C13 and N15-labeled recombinant protein (NP_001347)



  View other "DDX3" proteins (3)

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CNY 19,520.00


货期*
4周

规格
    • 10 ug

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经常一起买 (2)
Transient overexpression lysate of DEAD (Asp-Glu-Ala-Asp) box polypeptide 3, X-linked (DDX3X)
    • 100 ug

CNY 3,080.00


DDX3X rabbit polyclonal antibody
    • 100 ul

CNY 1,999.00
CNY 3,280.00

Specifications

Product Data
Description DDX3X MS Standard C13 and N15-labeled recombinant protein (NP_001347)
Species Human
Expression Host HEK293
Expression cDNA Clone or AA Sequence RC204171
Predicted MW 73.2 kDa
Protein Sequence
Tag C-Myc/DDK
Purity > 80% as determined by SDS-PAGE and Coomassie blue staining
Concentration >0.05 µg/µL as determined by microplate BCA method
Labeling Method Labeled with [U- 13C6, 15N4]-L-Arginine and [U- 13C6, 15N2]-L-Lysine
Buffer 25 mM Tris-HCl, 100 mM glycine, pH 7.3
Reference Data
RefSeq NP_001347
RefSeq Size 5433
RefSeq ORF 1986
Synonyms CAP-Rf; DBX; DDX3; DDX14; HLP2; MRX102; MRXSSB
Locus ID 1654
Cytogenetics Xp11.4
Summary The protein encoded by this gene is a member of the large DEAD-box protein family, that is defined by the presence of the conserved Asp-Glu-Ala-Asp (DEAD) motif, and has ATP-dependent RNA helicase activity. This protein has been reported to display a high level of RNA-independent ATPase activity, and unlike most DEAD-box helicases, the ATPase activity is thought to be stimulated by both RNA and DNA. This protein has multiple conserved domains and is thought to play roles in both the nucleus and cytoplasm. Nuclear roles include transcriptional regulation, mRNP assembly, pre-mRNA splicing, and mRNA export. In the cytoplasm, this protein is thought to be involved in translation, cellular signaling, and viral replication. Misregulation of this gene has been implicated in tumorigenesis. This gene has a paralog located in the nonrecombining region of the Y chromosome. Pseudogenes sharing similarity to both this gene and the DDX3Y paralog are found on chromosome 4 and the X chromosome. Alternative splicing results in multiple transcript variants. [provided by RefSeq, Oct 2014]
Protein Families ES Cell Differentiation/IPS
Protein Pathways RIG-I-like receptor signaling pathway
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