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Merck
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安全信息

AV36236

Sigma-Aldrich

Anti-ZNF683 antibody produced in rabbit

IgG fraction of antiserum

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别名:
Anti-Zinc finger protein 683
UNSPSC代码:
12352203
NACRES:
NA.41

生物来源

rabbit

质量水平

偶联物

unconjugated

抗体形式

IgG fraction of antiserum

抗体产品类型

primary antibodies

克隆

polyclonal

形式

buffered aqueous solution

分子量

55 kDa

种属反应性

human

浓度

0.5 mg - 1 mg/mL

技术

immunohistochemistry: suitable
western blot: suitable

NCBI登记号

UniProt登记号

运输

wet ice

储存温度

−20°C

靶向翻译后修饰

unmodified

基因信息

human ... ZNF683(257101)

免疫原

Synthetic peptide directed towards the N terminal region of human ZNF683

生化/生理作用

ZNF683 is a transcription factor characterized by the presence of Krüppel-associated boxes or KRAB domain. Zinc finger proteins have diverse functions that include activation of transcription, regulation of apoptosis, protein folding, RNA packaging and lipid binding. ZNF683 is a homolog of Blimp-1 that is expressed in mouse natural killer T cells.

序列

Synthetic peptide located within the following region: PAPLGTDLQGLQEDALSMKHEPPGLQASSTDDKKFTVKYPQNKDKLGKQP

外形

Purified antibody supplied in 1x PBS buffer with 0.09% (w/v) sodium azide and 2% sucrose.

免责声明

Unless otherwise stated in our catalog or other company documentation accompanying the product(s), our products are intended for research use only and are not to be used for any other purpose, which includes but is not limited to, unauthorized commercial uses, in vitro diagnostic uses, ex vivo or in vivo therapeutic uses or any type of consumption or application to humans or animals.

WGK

WGK 1

闪点(°F)

Not applicable

闪点(°C)

Not applicable

法规信息

常规特殊物品

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Klaas P J M van Gisbergen et al.
Nature immunology, 13(9), 864-871 (2012-08-14)
The transcriptional repressor Blimp-1 mediates the terminal differentiation of many cell types, including T cells. Here we identified Hobit (Znf683) as a previously unrecognized homolog of Blimp-1 that was specifically expressed in mouse natural killer T cells (NKT cells). Through
C D Constantinou-Deltas et al.
Genomics, 12(3), 581-589 (1992-03-01)
The zinc finger motif is a highly conserved tandemly repeated sequence of 28-30 amino acids that was first identified in transcription factor TFIIIA from Xenopus laevis. Subsequently, similar motifs were found and characterized in many genes from mammalian genomes and
J H Laity et al.
Current opinion in structural biology, 11(1), 39-46 (2001-02-17)
Zinc finger proteins are among the most abundant proteins in eukaryotic genomes. Their functions are extraordinarily diverse and include DNA recognition, RNA packaging, transcriptional activation, regulation of apoptosis, protein folding and assembly, and lipid binding. Zinc finger structures are as

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