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首页> 外文期刊>Quantum Beam Science >Structural Alterations of Histone Proteins in DNA-Damaged Cells Revealed by Synchrotron Radiation Circular Dichroism Spectroscopy: A New Piece of the DNA-Damage-Response Puzzle
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Structural Alterations of Histone Proteins in DNA-Damaged Cells Revealed by Synchrotron Radiation Circular Dichroism Spectroscopy: A New Piece of the DNA-Damage-Response Puzzle

机译:通过同步辐射圆形二色性光谱显示的DNA损伤细胞中组蛋白蛋白的结构改变:一种新的DNA损伤 - 反应难题

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Double-strand breaks of DNA may lead to discontinuous DNA and consequent loss of genetic information, which may result in mutations or, ultimately, carcinogenesis. To avoid such potentially serious situations, cells have evolved efficient DNA damage repair systems. It is thought that DNA-repair processes involve drastic alterations of chromatin and histone structures, but detection of these altered structures in DNA-damaged cells remains rare in the literature. Recently, synchrotron radiation circular dichroism (SRCD) spectroscopy, which can provide secondary structural information of proteins in solution, has identified structural alterations of histone proteins induced by DNA damage responses. In this review, these results and experimental procedures are discussed with the aim of facilitating further studies of the chromatin remodeling and DNA damage repair pathways using SRCD spectroscopy.
机译:双链断裂可能导致不连续的DNA,随之而来的遗传信息丧失,这可能导致突变或最终致癌。为了避免这种潜在的严重情况,细胞已经进化了有效的DNA损伤修复系统。据认为,DNA修复过程涉及染色质和组蛋白结构的激烈改变,但在DNA受损细胞中检测这些改变的结构在文献中仍然罕见。最近,同步辐射圆形二色性(SRCD)光谱学,其可以提供溶液中蛋白质的二次结构信息,已经确定了DNA损伤反应诱导的组蛋白蛋白的结构改变。在本文中,这些结果和实验程序讨论了使用SRCD光谱对染色质重塑和DNA损伤修复途径的进一步研究。

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