2007PubMedRequires access

[Association between gamma-H2AX and DNA double-strand breaks].

Ping Bin, Yuxin Zheng

Open publisher page 2 citations

Abstract

H2AX may be one family of histone and distributes among the genome. It is reported that DNA double-strand breaks (DSB) could induce phosphorylation of H2AX at conservative C-terminal region of serine 139 and the formation of gamma-H2AX. The gamma-H2AX foci can be observed by the fluorescence microscope. An immunofluorescence assay with specific antibodies recognizing gamma-H2AX could become the gold standard for detecting the DSB. It was indicated that some of physical, chemical, and biological factors could induce the formation of the gamma-H2AX foci. In this paper, the advance of the studies of mechanism of gamma-H2AX formation and the association between gamma-H2AX and DSB were reviewed.

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What this paper is about

H2AX may be one family of histone and distributes among the genome. It is reported that DNA double-strand breaks (DSB) could induce phosphorylation of H2AX at conservative C-terminal region of serine 139 and the formation of gamma-H2AX. The gamma-H2AX foci can be observed by the fluorescence microscope. An immunofluorescence assay with specific antibodies recognizing gamma-H2AX could become the gold standard for detecting the DSB. It was indicated that some of physical, chemical, and biological factors could induce the formation of the gamma-H2AX foci. In this paper, the advance of the studies of mechanism of gamma-H2AX formation and the association between gamma-H2AX and DSB were reviewed.

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Available abstract

H2AX may be one family of histone and distributes among the genome. It is reported that DNA double-strand breaks (DSB) could induce phosphorylation of H2AX at conservative C-terminal region of serine 139 and the formation of gamma-H2AX. The gamma-H2AX foci can be observed by the fluorescence microscope. An immunofluorescence assay with specific antibodies recognizing gamma-H2AX could become the gold standard for detecting the DSB. It was indicated that some of physical, chemical, and biological factors could induce the formation of the gamma-H2AX foci. In this paper, the advance of the studies of mechanism of gamma-H2AX formation and the association between gamma-H2AX and DSB were reviewed.

Key concepts: Histone, DNA, Double strand, Molecular biology, DNA damage, Serine, Chemistry, Biology

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