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SND1 Monoclonal antibody, PBS Only

SND1 Monoclonal Antibody for WB, IHC, IF/ICC, IP, Indirect ELISA
Cat No. 60265-1-PBS
Clone No.1A6A4

Host / Isotype

Mouse / IgG1

Reactivity

human, mouse, rat

Applications

WB, IHC, IF/ICC, IP, Indirect ELISA

100 kDa coactivator, EBNA2 coactivator p100, p100, p100 co activator, SND1, TDRD11

Formulation:  PBS Only
PBS and Azide
PBS Only
Conjugate:  Unconjugated
Size/Concentration: 

-/ -


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国内在庫・納期について

約2万点のプロテインテック製品をコスモバイオ社物流センター(国内)に在庫しています。国内在庫の有無はコスモバイオ社ホームページの「品番検索」でカタログ番号を検索して確認できます。


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

60265-1-PBS targets SND1 in WB, IHC, IF/ICC, IP, Indirect ELISA applications and shows reactivity with human, mouse, rat samples.

Tested Reactivity human, mouse, rat
Host / Isotype Mouse / IgG1
Class Monoclonal
Type Antibody
Immunogen SND1 fusion protein Ag1200 相同性解析による交差性が予測される生物種
Full Name staphylococcal nuclease and tudor domain containing 1
Calculated molecular weight 101 kDa
Observed molecular weight 101 kDa
GenBank accession numberBC017180
Gene Symbol SND1
Gene ID (NCBI) 27044
RRIDAB_2881386
Conjugate Unconjugated
Form Liquid
Purification MethodProtein G purification
UNIPROT IDQ7KZF4
Storage Buffer PBS Only
Storage ConditionsStore at -80°C.

Background Information

Staphylococcal nuclease domain-containing 1 (SND1), is a multifunctional nuclease that consists of four staphylococcal nuclease domains and a tudor domain. SND1 acts as a coactivator that facilitates transcriptional activity of STAT5, 6 and c-Myc. SND1 is a comprising part of the RNA-induced silencing complex(RISC), and takes part in the functions of miRNA, regulates transcription through transcriptional coactivation, RNA interference, RNA splicing, and RNA editing. Higher level of SND1 has been found in colon cancer and prostate cancer, can promote HCC angiogenesis in xenograft model through induction of angiogenic factors.

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