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Key Documents

SRP0178

Sigma-Aldrich

Histone H4 full length human

recombinant, expressed in E. coli, ≥80% (SDS-PAGE)

别名:

HIST2H4A

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About This Item

分類程式碼代碼:
12352200
NACRES:
NA.32

生物源

human

重組細胞

expressed in E. coli

化驗

≥80% (SDS-PAGE)

形狀

aqueous solution

分子量

12.1 kDa

包裝

pkg of 1 mg

儲存條件

avoid repeated freeze/thaw cycles

濃度

>0.02 mg/mL

NCBI登錄號

UniProt登錄號

運輸包裝

dry ice

儲存溫度

−70°C

基因資訊

human ... HIST2H4A(8370)

一般說明

Human Histone 4 (HIST2H4A) (GenBank Accession No. NM_003548), amino acids 2-104 (end) with N-terminal His-tag, MW = 12.1 kDa, expressed in an E. coli expression system.

應用

Suitable substrate for histone methyltransferases.

生化/生理作用

Histones H2B and H4 are found to become mobilized during an infection with HSV-1 (herpes simplex virus-1) and become available for binding to viral genome.

外觀

Formulated in 25 mM Tris-HCl, pH 8.0, 100 mM NaCl, 0.05% Tween-20, 20% glycerol and 3 mM DTT.

準備報告

Thaw on ice. Upon first thaw, briefly spin tube containing protein to recover full content of the tube. Aliquot protein into single use aliquots. Store remaining undiluted protein in aliquots at -70°C. Note: Protein is very sensitive to freeze/thaw cycles.

儲存類別代碼

12 - Non Combustible Liquids

水污染物質分類(WGK)

WGK 1

閃點(°F)

Not applicable

閃點(°C)

Not applicable


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Recognition and classification of histones using support vector machine.
Bhasin M
Journal of Computational Biology : A Journal of Computational Molecular Cell Biology, 13, 102-112 (2006)
Core histones H2B and H4 are mobilized during infection with herpes simplex virus 1.
Conn KL
Journal of Virology, 85, 13234-13252 (2011)
The histone variant H3.3 marks active chromatin by replication-independent nucleosome assembly.
Ahmad K and Henikoff S
Molecular Cell, 9(6), 1191-1200 (2002)
A comprehensive view of the epigenetic landscape part I: DNA methylation, passive and active DNA demethylation pathways and histone variants.
Sadakierska-Chudy A
Neurotoxicity Research, 27(1), 84-97 (2015)

商品

Epigenetic modifications are thought to occur through two key interconnected processes—DNA methylation and the covalent modification of histones.

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