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溴化乙锭结合导致染色质结构松弛:通过粘度测定法和组蛋白解离研究确定。

Relaxation of chromatin structure by ethidium bromide binding: determined by viscometry and histone dissociation studies.

作者信息

Strätling W H, Seidel I

出版信息

Biochemistry. 1976 Nov 2;15(22):4803-9. doi: 10.1021/bi00667a009.

DOI:10.1021/bi00667a009
PMID:990244
Abstract

The effects of ethidium bromide intercalation on chromatin structure were monitored by viscometry and analysis of histone dissociation. Investigation of the NaCl concentration dependence of chromatin viscosity showed that the reduced viscosity (etared) was very low up to 0.4 M NaCl and increased gradually when the salt concentration was raised further. In chromatin intercalated by ethidium bromide, etared was not significantly different at low salt concentrations (up to 0.2 M NaCl). However, when the salt concentration was raised further, the viscosity response curve increased sharply to reach viscosities about 4-5 times higher than those for nonintercalated chromatin. The increase in viscosity was proportional to the increase in fluorescence intensity, when the ratio of ethidium bromide to DNA mucleotide was raised. The transition of intercalated chromatin into the relaxed form was reversible, dependent on the nature of the electrolyte and cooperative, as indicated by the small increase in salt concentration required to obtain chromatin relaxation. Investigation of the NaCl concentration dependence of histone dissociation revealed that total histones and each individual histone fraction were released from intercalated chromatin at much reduced NaCl concentrations. The midpoints of the dissociation curves of the individual histones ranged from 0.30 to 0.45 M NaCl and fell within the same range where the drastic viscosity change occurred. These results indicate that intercalation of ethidium bromide labilizes chromatin structure to relaxation by moderately elevated salt concentrations. It is suggested that the labilization is caused by changes in the DNA helix conformation due to dye intercalation decreasing the stability of histone-DNA interactions.

摘要

通过粘度测定法和组蛋白解离分析监测溴化乙锭嵌入对染色质结构的影响。对染色质粘度的氯化钠浓度依赖性研究表明,在氯化钠浓度达到0.4M之前,比浓粘度(ηred)非常低,当盐浓度进一步升高时,其逐渐增加。在被溴化乙锭嵌入的染色质中,在低盐浓度(高达0.2M氯化钠)下,ηred没有显著差异。然而,当盐浓度进一步升高时,粘度响应曲线急剧上升,达到的粘度比未嵌入染色质的粘度高约4 - 5倍。当溴化乙锭与DNA核苷酸的比例增加时,粘度的增加与荧光强度的增加成正比。嵌入染色质向松弛形式的转变是可逆的,取决于电解质的性质且具有协同性,这可通过获得染色质松弛所需的盐浓度的小幅增加来表明。对组蛋白解离的氯化钠浓度依赖性研究表明,在大大降低的氯化钠浓度下,总组蛋白和每个单独的组蛋白组分从嵌入的染色质中释放出来。各个组蛋白解离曲线的中点范围为0.30至0.45M氯化钠,且落在发生剧烈粘度变化的相同范围内。这些结果表明,溴化乙锭的嵌入通过适度提高盐浓度使染色质结构不稳定而趋于松弛。有人提出,这种不稳定是由于染料嵌入导致DNA螺旋构象变化从而降低组蛋白 - DNA相互作用的稳定性所致。

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Relaxation of chromatin structure by ethidium bromide binding: determined by viscometry and histone dissociation studies.溴化乙锭结合导致染色质结构松弛:通过粘度测定法和组蛋白解离研究确定。
Biochemistry. 1976 Nov 2;15(22):4803-9. doi: 10.1021/bi00667a009.
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Structural transition in chromatin induced by ions in solution.溶液中离子诱导的染色质结构转变
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