catalog number :
MBS120170
products full name :
Mouse monoclonal antibody Anti-Human DHX38
products short name :
DHX38
products name syn :
Homo sapiens DEAH (Asp-Glu-Ala-His) box polypeptide 38 (DHX38), mRNA; DDX38; PRP16; PRPF16; KIAA0224
other names :
Homo sapiens DEAH (Asp-Glu-Ala-His) box polypeptide 38 (DHX38), mRNA; Pre-mRNA-splicing factor ATP-dependent RNA helicase PRP16; pre-mRNA-splicing factor ATP-dependent RNA helicase PRP16; ATP-dependent RNA helicase DHX38; DEAD/H (Asp-Glu-Ala-Asp/His) box polypeptide 38; DEAH box protein 38; PRP16 homolog of S.cerevisiae; pre-mRNA splicing factor ATP-dependent RNA helicase PRP16; DEAH (Asp-Glu-Ala-His) box polypeptide 38; ATP-dependent RNA helicase DHX38; DEAH box protein 38
products gene name :
DHX38
other gene names :
DHX38; DHX38; DDX38; PRP16; PRPF16
uniprot entry name :
PRP16_HUMAN
concentration :
100 ug/ml (1.0 ml)
tested application :
Dot Blot (DB), Immunocytochemistry (ICC), Immunoprecipitation (IP), Western Blot (WB), Flow Cytometry (FC/FACS)
other info1 :
Preparation: This antibody was purified using protein G column chromatography from culture supernatant of hybridoma cultured in a medium containing bovine IgG-depleted (approximately 95%) fetal bovine serum.
other info2 :
Sterility: Filtered through a 0.22 um membrane.
products description :
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. The protein encoded by this gene is a member of the DEAD/H box family of splicing factors. This protein resembles yeast Prp16 more closely than other DEAD/H family members. It is an ATPase and essential for the catalytic step II in pre-mRNA splicing process. [NCBI Entrez Gene Summary]
ncbi acc num :
NP_054722.2
ncbi gb acc num :
NM_014003
ncbi mol weight :
60,743 Da
ncbi pathways :
Cleavage Of Growing Transcript In The Termination Region Pathway (106560); Gene Expression Pathway (105937); Processing Of Capped Intron-Containing Pre-mRNA Pathway (160950); RNA Polymerase II Transcription Pathway (106557); RNA Polymerase II Transcription Termination Pathway (106559); Spliceosome Pathway (125136); Spliceosome Pathway (124832); Transport Of Mature Transcript To Cytoplasm Pathway (105959); Transport Of Mature MRNA Derived From An Intron-Containing Transcript Pathway (105960); MRNA 3'-end Processing Pathway (105957)
ncbi 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. The protein encoded by this gene is a member of the DEAD/H box family of splicing factors. This protein resembles yeast Prp16 more closely than other DEAD/H family members. It is an ATPase and essential for the catalytic step II in pre-mRNA splicing process. [provided by RefSeq, Jul 2008]
uniprot summary :
DHX38: Probable ATP-binding RNA helicase involved in pre-mRNA splicing. Belongs to the DEAD box helicase family. DEAH subfamily. PRP16 sub-subfamily. Protein type: EC 3.6.4.13; RNA processing; RNA splicing; RNA-binding; Helicase; Spliceosome. Chromosomal Location of Human Ortholog: 16q22. Cellular Component: nucleoplasm; membrane; cytoplasm; nucleus. Molecular Function: protein binding; ATP-dependent RNA helicase activity; ATP binding. Biological Process: nuclear mRNA splicing, via spliceosome; transcription from RNA polymerase II promoter; mRNA export from nucleus; RNA splicing; gene expression; mRNA 3 -end processing; termination of RNA polymerase II transcription