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| Cat.No | ACP18209 | Target Name | SRSF7 |
|---|---|---|---|
| Target Synonyms | 9G8; AAG3; arginine/serine-rich 7; HSSG1; RBM37; Serine/arginine-rich splicing factor 7; Splicing factor 9G8; Splicing factor; Splicing factor, arginine/serine rich 7; SRSF7; SRSF7_HUMAN; ZCCHC20; ZCRB2 | Form | Lyophilized powder |
| Expression System | Custom Production. Please inquire and provide the desire expression system. | Expression Range | 1-238 |
| Protein Length | Full length protein | Purity | >85% (SDS-PAGE) |
| Storage Buffer | 5%-50% glycerol. Lyophilized powder form: the buffer before lyophilization is Tris/PBS-based buffer, 6% Trehalose, Liquid form: default storage buffer is Tris/PBS-based buffer, pH 8.0. |
| Target Species | Human | Uniprot ID | Q16629 |
|---|
Uniprot Id
Q16629
Target Species
Human
Target Name
SRSF7
Target Full Name
Serine/arginine-rich splicing factor 7
Target Function
Required for pre-mRNA splicing. Can also modulate alternative splicing in vitro. Represses the splicing of MAPT/Tau exon 10. May function as export adapter involved in mRNA nuclear export such as of histone H2A. Binds mRNA which is thought to be transferred to the NXF1-NXT1 heterodimer for export (TAP/NXF1 pathway); enhances NXF1-NXT1 RNA-binding activity. RNA-binding is semi-sequence specific.
Target Subcellular Location
Nucleus. Cytoplasm.
Target Protein Families
Splicing factor SR family
Target Tissue Specificity
Brain, liver, kidney and lung.
Target Synonyms
9G8; AAG3; arginine/serine-rich 7; HSSG1; RBM37; Serine/arginine-rich splicing factor 7; Splicing factor 9G8; Splicing factor; Splicing factor, arginine/serine rich 7; SRSF7; SRSF7_HUMAN; ZCCHC20; ZCRB2
Target Background
The protein encoded by this gene is a member of the serine/arginine (SR)-rich family of pre-mRNA splicing factors, which constitute part of the spliceosome. Each of these factors contains an N-terminal RNA recognition motif (RRM) for binding RNA and a C-terminal RS domain for binding other proteins. The RS domain is rich in serine and arginine residues and facilitates interaction between different SR splicing factors. In addition to being critical for mRNA splicing, the SR proteins have also been shown to be involved in mRNA export from the nucleus and in translation. Multiple transcript variants encoding different isoforms have been found for this gene.
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