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SCC117

Histone H2B-GFP expressing HeLa Cell Line

Human

别名:

Histone H2B

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UNSPSC Code:
41106514
NACRES:
NA.81
eCl@ss:
32011203
Biological source:
human
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产品名称

Histone H2B-GFP expressing HeLa Cell Line, The Histone H2B-GFP expressing HeLa cell line is a useful cell model for imaging and analysis of chromosome dynamics.

biological source

human

technique(s)

cell based assay: suitable, cell culture | mammalian: suitable

shipped in

ambient

Quality Level

General description

Chromatin, the higher order structure of DNA, proteins and RNA, constitutes the majority of the nucleus of eukaryotic cells. Changes in chromatin structure are the essence of many essential nuclear processes, including transcription, meiosis, mitosis, and apoptosis. The nucleosome represents the primary building block of chromatin and it comprises an octomer of four core histone proteins (H2A, H2B, H3 and H4). HeLa cells expressing green fluorescent protein fused histone H2B (H2B-GFP) have been widely used to visualize the dynamics of chromosomal architecture in living cells during various processes. In addition to studying normal mitosis, histone H2B-GFP has been utilized for imaging the distinctive clustering behavior of double minute chromosomes (DMs) in cancer cells during mitosis, which contributes to their asymmetric distribution to daughter cells. Monitoring histone H2B-GFP also permits continuous analysis of chromosomal degradation during apoptosis.

Application

Research Category
Apoptosis & Cancer

Epigenetics & Nuclear Function
Research Sub Category
Cell Cycle, DNA Replication & Repair

Chromatin Biology

Histones
Subject to local law, this product is intended to be sold for internal in vitro research use only subject to terms and conditions found here: www.sigmaaldrich.com/restrictedcelluse. This product may not be: re-engineered or copied; used to make derivatives, modifications or functional equivalents; used to obtain patents or other IP claiming use of the product; used to develop, test, or manufacturer a commercial product; used as a component in a commercial product; resold or licensed; used in any clinical applications or trials; or used in humans. A license or limited commercial use agreement is required for use by any for-profit entity, use in services, and use in sponsored academic research. For information regarding any such use, please contact licensing@milliporesigma.com.

Biochem/physiol Actions

Cancer Cells

Preparation Note

Histone H2B-GFP expressing HeLa Cell Line should be stored in liquid nitrogen. The cells can be cultured for at least 10 passages after initial thawing without significantly affecting the cell marker expression and functionality.

Analysis Note

• Each vial contains ≥ 1X106 viable cells.
• Cells are tested by PCR and are negative for HPV-16, HPV-18, Hepatitis A, B, C and HIV-1 & 2 viruses.
• Cells are negative for mycoplasma contamination.
• Each lot of cells are genotyped by STR analysis to verify the unique identity of the cell line.

Disclaimer

RESEARCH USE ONLY. This product is regulated in France when intended to be used for scientific purposes, including for import and export activities (Article L 1211-1 paragraph 2 of the Public Health Code). The purchaser (i.e. enduser) is required to obtain an import authorization from the France Ministry of Research referred in the Article L1245-5-1 II. of Public Health Code. By ordering this product, you are confirming that you have obtained the proper import authorization.

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Danger

hcodes

Hazard Classifications

Acute Tox. 3 Oral

存储类别

6.1C - Combustible acute toxic Cat.3 / toxic compounds or compounds which causing chronic effects

wgk

WGK 2

法规信息

高风险级别生物产品--人源产品
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J L Workman et al.
Annual review of biochemistry, 67, 545-579 (1998-10-06)
The nucleosome, which is the primary building block of chromatin, is not a static structure: It can adopt alternative conformations. Changes in solution conditions or changes in histone acetylation state cause nucleosomes and nucleosomal arrays to behave with altered biophysical
Athea Vichas et al.
Nature communications, 12(1), 4789-4789 (2021-08-11)
CRISPR-based cancer dependency maps are accelerating advances in cancer precision medicine, but adequate functional maps are limited to the most common oncogenes. To identify opportunities for therapeutic intervention in other rarer subsets of cancer, we investigate the oncogene-specific dependencies conferred

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