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SFR1 Polyclonal antibody, PBS Only

SFR1 Polyclonal Antibody for WB, ELISA

Cat No. 26284-1-PBS

Host / Isotype

Rabbit / IgG

Reactivity

human

Applications

WB, ELISA

C10orf78, MEI5, Meiosis protein 5 homolog, MEIR5, SWI5 Dependent Homologous Recombination Repair Protein 1

Formulation:  PBS Only
Conjugate:  Unconjugated
Size/Concentration: 

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Freight/Packing: -

Quantity

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Product Information

26284-1-PBS targets SFR1 in WB, ELISA applications and shows reactivity with human samples.

Tested Reactivity human
Host / Isotype Rabbit / IgG
Class Polyclonal
Type Antibody
Immunogen

CatNo: Ag23332

Product name: Recombinant human C10orf78 protein

Source: e coli.-derived, PET28a

Tag: 6*His

Domain: 1-232 aa of BC140835

Sequence: MESPSDSAVVLPSTPQASANPSSPYTNSSRKQPMSATLRERLRKTRFSFNSSYNVVKRLKVESEENDQTFSEKPASSTEENCLEFQESFKHIDSEFEENTNLKNTLKNLNVCESQSLDSGSCSALQNEFVSEKLPKQRLNAEKAKLVKQVQEKEDLLRRLKLVKMYRSKNDLSQLQLLIKKWRSCSQLLLYELQSAVSEENKKLSLTQLIDHYGLDDKLLHYNRSEEEFIDV

Predict reactive species
Full Name chromosome 10 open reading frame 78
Observed Molecular Weight35, 36 kDa
GenBank Accession NumberBC140835
Gene Symbol C10orf78
Gene ID (NCBI) 119392
RRIDAB_3742177
Conjugate Unconjugated
FormLiquid
Purification MethodAntigen affinity purification
UNIPROT IDQ86XK3
Storage Buffer PBS only, pH 7.3.
Storage ConditionsStore at -80°C.

Background Information

The SFR1 protein was initially discovered in the context of DNA homologous recombination repair, and its name originates from "Swi6-interacting recombination repair protein 1." However, subsequent research has revealed its central role in the field of cell death, particularly in the process of **necroptosis**. In the classical necroptosis signaling pathway, when cells receive death signals such as tumor necrosis factor, SFR1 is recruited and phosphorylated by the upstream kinase RIPK3 as a key adaptor protein. Phosphorylated SFR1 specifically binds to and stabilizes MLKL, the core executioner protein of necroptosis, significantly promoting the phosphorylation and subsequent activation of MLKL by RIPK3. This process ultimately leads to plasma membrane rupture and inflammatory cell death. Therefore, SFR1 is considered a critical molecule that precisely regulates the amplification and execution of necroptosis signaling. The study of its function is of great importance for understanding pathological processes such as infections, inflammatory diseases, and tissue damage.

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