MTF2 Monoclonal antibody, PBS Only

MTF2 Monoclonal Antibody for WB, Indirect ELISA
Cat No. 68713-1-PBS

产品说明书

CloneNo. 2E5D5

宿主/亚型

Mouse / IgG2b

种属反应性

Human, Rat, Rabbit, Mouse

应用

WB, Indirect ELISA

dJ976O13.2, hPCl2, M96, MTF2, PCL2, Polycomb like protein 2, RP5 976O13.1

缓冲液配方:  PBS Only
PBS and Azide
PBS Only
偶联物:  Unconjugated
规格价格库存


产品信息

68713-1-PBS targets MTF2 in WB, Indirect ELISA applications and shows reactivity with Human, Rat, Rabbit, Mouse samples.

经测试应用 WB, Indirect ELISA Application Description
经测试反应性 Human, Rat, Rabbit, Mouse
免疫原

CatNo: Ag9384

Product name: Recombinant human MTF2 protein

Source: e coli.-derived, PET28a

Tag: 6*His

Domain: 187-536 aa of BC010013

Sequence: ADLEWDAGHKTNVQQCYCYCGGPGDWYLKMLQCCKCKQWFHEACVQCLQKPMLFGDRFYTFICSVCSSGPEYLKRLPLQWVDIAHLCLYNLSVIHKKKYFDSELELMTYINENWDRLHPGELADTPKSERYEHVLEALNDYKTMEVSNGIEKKGKKKSVGRPPGPYTRKMIQKTAEPLLDKESISENPTLDLPCSIGRTEGTAHSSNTSDVDFTGASSAKETTSSSISRHYGLSDSRKRTRTGRSWPAAIPHLRRRRGRLPRRALQTQNSEIVKDDEGKEDYQFDELNTEILNNLADQELQLNHLKNSITSYFGAAGRIACGEKYRVLARRVTLDGKVQYLVEWEGATAS

种属同源性预测
宿主/亚型 Mouse / IgG2b
抗体类别 Monoclonal
产品类型 Antibody
全称 metal response element binding transcription factor 2
别名 dJ976O13.2, hPCl2, M96, MTF2, PCL2, Polycomb like protein 2, RP5 976O13.1
计算分子量 536 aa, 61 kDa
观测分子量55 kDa, 60 kDa, 75 kDa
GenBank蛋白编号BC010013
基因名称 MTF2
Gene ID (NCBI) 22823
偶联类型 Unconjugated
形式Liquid
纯化方式Protein A purification
UNIPROT IDQ9Y483
储存缓冲液 PBS only, pH 7.3.
储存条件Store at -80°C.
The product is shipped with ice packs. Upon receipt, store it immediately at -80°C

背景介绍

MTF2, also named as Metal-response element-binding transcription factor 2, is a 593 amino acid protein. It exists several isoforms and the range of the molecular weight of isoforms are about 55-60 kDa and 29 kDa. MTF2 contains 2 PHD-type zinc fingers and belongs to the Polycomblike family. MTF2 acts by binding to H3K36me3, a mark for transcriptional activation, and recruiting the PRC2 complex, leading to enhance PRC2 H3K27me3 methylation activity and regulates the transcriptional networks during embryonic stem cell self-renewal and differentiation.

Loading...