Myogenin Polyclonal antibody

Myogenin Polyclonal Antibody for WB, ELISA
Cat No. 26762-1-AP

产品说明书

宿主/亚型

Rabbit / IgG

种属反应性

human, mouse, rat

应用

WB, ELISA

MYOG, Myf-4, MYF4, Myf 4, Class C basic helix-loop-helix protein 3

缓冲液配方:  PBS and Azide
PBS and Azide
偶联物:  Unconjugated
Unconjugated
规格: 

-/ -


经过测试的应用

Positive WB detected inmouse heart tissue, mouse skeletal muscle tissue, rat heart tissue, rat skeletal muscle tissue

推荐稀释比

应用推荐稀释比
Western Blot (WB)WB : 1:5000-1:50000
It is recommended that this reagent should be titrated in each testing system to obtain optimal results.
Sample-dependent, Check data in validation data gallery.

发表文章中的应用

WBSee 1 publications below

产品信息

26762-1-AP targets Myogenin in WB, ELISA applications and shows reactivity with human, mouse, rat samples.

经测试应用 WB, ELISA Application Description
文献引用应用WB
经测试反应性 human, mouse, rat
文献引用反应性rat
免疫原 Myogenin fusion protein Ag25081 种属同源性预测
宿主/亚型 Rabbit / IgG
抗体类别 Polyclonal
产品类型 Antibody
全称 myogenin (myogenic factor 4)
别名 MYOG, Myf-4, MYF4, Myf 4, Class C basic helix-loop-helix protein 3
计算分子量 25 kDa
观测分子量30 kDa
GenBank蛋白编号BC053899
基因名称 Myogenin
Gene ID (NCBI) 4656
RRIDAB_3669566
偶联类型 Unconjugated
形式 Liquid
纯化方式Antigen affinity purification
UNIPROT IDP15173
储存缓冲液 PBS with 0.02% sodium azide and 50% glycerol , pH 7.3
储存条件Store at -20°C. Stable for one year after shipment. Aliquoting is unnecessary for -20oC storage.

背景介绍

MYOG (encoded Myogenin protein) is a muscle-specific transcription factor that belongs to a family of basic helix-loop-helix transcription factors. It plays a role in muscle differentiation, cell cycle exit, and muscle atrophy(PMID: 30315160). Diseases associated with MYOG include Embryonal Rhabdomyosarcoma and Gallbladder Sarcoma.

实验方案

Product Specific Protocols
WB protocol for Myogenin antibody 26762-1-APDownload protocol
Standard Protocols
Click here to view our Standard Protocols

发表文章

SpeciesApplicationTitle
ratWB

Int Urogynecol J

Mechanical Stress-Oxidative Stress Axis: Biological Basis in the Vaginal Wall and Pelvic Floor Muscles of Rats with Simulated Birth Injury

Authors - Qing Wang
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