FAM86A Polyclonal antibody, PBS Only

FAM86A Polyclonal Antibody for WB, Indirect ELISA
Cat No. 32472-1-PBS

Host / Isotype

Rabbit / IgG

Reactivity

human

Applications

WB, Indirect ELISA

EC:2.1.1.-, EEF2KMT, eEF2-KMT, eEF2-lysine methyltransferase, Eukaryotic Elongation Factor 2 Lysine Methyltransferase

Formulation:  PBS Only
Conjugate:  Unconjugated
Size/Concentration: 

-/ -


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保証・サポートについて

テクニカルサポートまたはご購入後1年間の交換/補填対応を承ります。詳細はこちらをご覧ください。


Tested Applications

Recommended dilution

ApplicationDilution
It is recommended that this reagent should be titrated in each testing system to obtain optimal results.

Product Information

32472-1-PBS targets FAM86A in WB, Indirect ELISA applications and shows reactivity with human samples.

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

CatNo: Ag38481

Product name: Recombinant human FAM86A protein

Source: e coli.-derived, PGEX-4T

Tag: GST

Domain: 1-330 aa of BC010084

Sequence: MAPEENAGTELLLQSFERRFLAARTLRSFPWQSLEAKLRDSSDSELLRDILHKTVKHPVCVKHPPSVKYARCFLSELIKKHEAVHTEPLDELYEALAETLMAKESTQGHRSYLLPSGGSVTLSESTAIISYGTTGLVTWDAALYLAEWAIENPAVFTNRTVLELGSGAGLTGLAICKMCRPRAYIFSDCHSRVLEQLRGNVLLNGLSLEADITAKLDSPRVTVAQLDWDVATVHQLSAFQPDVVIAADVLYCPEAIMSLVGVLRRLAACREDQRAPEVYVAFTVRNPETCQLFTTELGRAGIRWEVEPRHEQKLFPYEEHLEMAMLNLTL

相同性解析による交差性が予測される生物種
Full Name family with sequence similarity 86, member A
Observed molecular weight38 kDa
GenBank accession numberBC010084
Gene Symbol FAM86A
Gene ID (NCBI) 196483
Conjugate Unconjugated
Form
FormLiquid
Purification MethodAntigen affinity Purification
UNIPROT IDQ96G04
Storage Buffer PBS only{{ptg:BufferTemp}}7.3
Storage ConditionsStore at -80°C.

Background Information

FAM86A is a class I lysine methyltransferase (KMT), belonging to the family of protein methyltransferases (KMTs), which produces trimethylation (K525me3) at the Lys525 site of eukaryotic translation elongation factor 2 (EEF2) and promotes the binding of eEF2 to ribosomes, thereby regulating the protein synthesis. (PMID: 38508183) FAM86A is expressed in a highly dependent manner in a variety of human cancer cell lines, suggesting that FAM86A may be a potential target for future anticancer therapy.

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