PIPA5104263

Phospho-SF1 (Ser80, Ser82) Polyclonal Antibody, Invitrogen™

Manufacturer: Thermo Scientific

Select a Size

Pack Size SKU Availability Price
Each of 1 PIPA5104263-Each-of-1 In Stock ₹ 41,518.50

PIPA5104263 - Each of 1

₹ 41,518.50

In Stock

Quantity

1

Base Price: ₹ 41,518.50

GST (18%): ₹ 7,473.33

Total Price: ₹ 48,991.83

Antigen

Phospho-SF1 (Ser80, Ser82)

Classification

Polyclonal

Conjugate

Unconjugated

Gene

SF1

Gene Alias

BBP; D11S636; M ZFM1; Mammalian branch point-binding protein; MBBP; MZFM; SF; SF1; Splicing factor 1; transcription factor ZFM1; WBP4; wu:fc09f06; ZCCHC25; ZFM1; Zfp162; Zinc finger gene in MEN1 locus; zinc finger protein 162; ZNF162

Host Species

Rabbit

Purification Method

sequential chromatography

Regulatory Status

RUO

Gene ID (Entrez)

117855, 22668, 7536

Content And Storage

-20°C

Form

Liquid

Applications

Immunohistochemistry (Paraffin), Western Blot

Concentration

1 mg/mL

Formulation

PBS with 50% glycerol and 0.02% sodium azide; pH 7.4

Gene Accession No.

Q15637, Q64213

Gene Symbols

SF1

Immunogen

A synthesized peptide derived from human SF1(Accession Q15637), corresponding to amino acid residues around phosphorylated Ser82.

Quantity

100 μL

Primary or Secondary

Primary

Target Species

Human, Mouse, Non-human Primate, Rat

Product Type

Antibody

Isotype

IgG

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Description

  • Antibody detects endogenous levels of SF1 only when phosphorylated at Ser80/82
  • Splicing factor 1 is a nuclear pre-mRNA splicing factor
  • The 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 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.