SRP2104
Arginine Splicing Factor, His tagged human
recombinant, expressed in insect cells, ≥85% (SDS-PAGE)
Synonym(s):
ASF, FLJ53078, MGC5228, SF2, SF2p33, SFRS1, SRp30a
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About This Item
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biological source
human
recombinant
expressed in insect cells
Assay
≥85% (SDS-PAGE)
form
frozen liquid
mol wt
~29.3 kDa
packaging
pkg of 5 μg
storage condition
avoid repeated freeze/thaw cycles
concentration
350 μg/mL
color
clear
colorless
NCBI accession no.
UniProt accession no.
shipped in
dry ice
storage temp.
−70°C
Gene Information
human ... SRSF1(6426)
Biochem/physiol Actions
ASF also known as SF2 is a member of the SR protein family. It is an essential pre-mRNA splicing factor required for both single and alternative splicing. Phosphorylation on serine residues located within the SR domain directly regulates ASF/SF2 activity and compartmentalization of other SR splicing factors. In addition to interacting with RNA and other splicing factors, such as U1-70K, U2AF and other SR proteins, ASF/SF2 also directly or indirectly interacts with HIV regulatory protein Rev, the C-terminal domain (CTD) of the largest subunit of RNA polymerase II, and numerous transcription factors, thereby suggesting a potential role of ASF/SF2 in coordinating transcription and pre-mRNA splicing.
Physical form
Clear and colorless frozen liquid solution
Preparation Note
Use a manual defrost freezer and avoid repeated freeze-thaw cycles. While working, please keep sample on ice.
Storage Class Code
10 - Combustible liquids
WGK
WGK 1
Flash Point(F)
Not applicable
Flash Point(C)
Not applicable
Certificates of Analysis (COA)
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Cell, 62(1), 25-34 (1990-07-13)
SV40 early pre-mRNA is alternatively spliced by utilization of two different 5' splice sites and a shared 3' splice site to produce large T and small t mRNAs. The ratio of small t to large T mRNAs produced in human
Cell, 66(2), 383-394 (1991-07-26)
SF2 is a protein factor essential for constitutive pre-mRNA splicing in HeLa cell extracts and also activates proximal alternative 5' splice sites in a concentration-dependent manner. This latter property suggests a role for SF2 in preventing exon skipping, ensuring the
Genes & development, 6(5), 837-847 (1992-05-01)
We demonstrate that four different proteins from calf thymus are able to restore splicing in the same splicing-deficient extract using several different pre-mRNA substrates. These proteins are members of a conserved family of proteins recognized by a monoclonal antibody that
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