Splicing Factor 1 / Unconjugated /
Product Details
Description | Rabbit polyclonal to SF1. SF1 (splicing factor 1), also known as zinc finger protein 162 (ZFM162), ZNF162, Transcription factor ZFM1,ZFM1, D11S636, Mammalian branch point-binding protein(BBP, mBBP), Zinc finger gene in MEN1 locus, is a protein that in humans is encoded by the SF1 gene. It is predicted 623-amino acid protein. RT-PCR was used to show expression in the thyroid gland, pancreas, adrenal gland, and ovary. All of the ZNF162 isoforms contain a KH domain, a sequence motif present in proteins playinig a major role in regulating cellular RNA metabolism. | |
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Conjugate | Unconjugated | |
Clone | ||
Target Species | Human, Mouse, Rat | |
Applications | IF, IHC-P, ICC, WB | |
Supplier | Biorbyt | |
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About Splicing Factor 1
This gene encodes a nuclear pre-mRNA splicing factor. The encoded protein specifically recognizes the intron branch point sequence at the 3' splice site, together with the large subunit of U2 auxiliary factor (U2AF), and is required for the early stages of spliceosome assembly. It also plays a role in nuclear pre-mRNA retention and transcriptional repression. The encoded protein contains an N-terminal U2AF ligand motif, a central hnRNP K homology motif and quaking 2 region which bind a key branch-site adenosine within the branch point sequence, a zinc knuckles domain, and a C-terminal proline-rich domain. Alternative splicing results in multiple transcript variants. [provided by RefSeq, Oct 2016]
This gene encodes a nuclear pre-mRNA splicing factor. The encoded protein specifically recognizes the intron branch point sequence at the 3' splice site, together with the large subunit of U2 auxiliary factor (U2AF), and is required for the early stages of spliceosome assembly. It also plays a role in nuclear pre-mRNA retention and transcriptional repression. The encoded protein contains an N-terminal U2AF ligand motif, a central hnRNP K homology motif and quaking 2 region which bind a key branch-site adenosine within the branch point sequence, a zinc knuckles domain, and a C-terminal proline-rich domain. Alternative splicing results in multiple transcript variants. [provided by RefSeq, Oct 2016]
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