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用限制性核酸内切酶原位消化后小鼠染色质纤维结构的图像分析

Image analysis of murine chromatin fiber structure after in situ digestion with restriction endonucleases.

作者信息

Gosálvez J, Buño I, López-Fernández C, Fernández J L, Goyanes V J

机构信息

Department of Biology, Faculty of Science, Autonomous University of Madrid, Spain.

出版信息

Anal Quant Cytol Histol. 1997 Jun;19(3):207-14.

PMID:9196803
Abstract

OBJECTIVE

To determine and quantify the differences produced in chromatin structure after selective in situ DNA digestion with restriction endonuclease (RE).

STUDY DESIGN

Chromatin fiber structure from a murine cell line was analyzed under light and electron microscopy before and after in situ digestion with AluI, HinfI and HaeIII using digital image analysis (DIA). The proposed DIA-based method entails the generation of a binary image and a skeleton characteristic of the chromatin fiber. Morphologic features (surface, perimeter, shape, number of triple points and Euler number) of the chromatin structure can then be quantified from the digitized images. The results of these experiments were compared with those obtained from direct digestion of naked DNA using the same endonucleases in an attempt to correlate the distribution of restriction sites, according to the DNA fragment size obtained, with the extent of chromatin disorganization after RE in situ digestion.

RESULTS

Homologous chromatin fiber regions are differentially affected by the action of each RE, although they are indistinguishable under light microscopy.

CONCLUSION

The proposed analytical routine constitutes a valuable tool for uncovering subtle alterations in the structure of chromatin fiber that has been modified under different experimental conditions.

摘要

目的

确定并量化用限制性内切酶(RE)进行选择性原位DNA消化后染色质结构产生的差异。

研究设计

使用数字图像分析(DIA),在光镜和电镜下分析小鼠细胞系的染色质纤维结构,该结构在用AluI、HinfI和HaeIII进行原位消化之前和之后的情况。所提出的基于DIA的方法需要生成一个二值图像和染色质纤维的骨架特征。然后可以从数字化图像中量化染色质结构的形态学特征(表面积、周长、形状、三点数量和欧拉数)。将这些实验结果与使用相同内切酶对裸露DNA进行直接消化所获得的结果进行比较,试图根据获得的DNA片段大小,将限制性位点的分布与RE原位消化后染色质的紊乱程度相关联。

结果

同源染色质纤维区域受每种RE作用的影响不同,尽管在光镜下它们难以区分。

结论

所提出的分析程序是一种有价值的工具,可用于揭示在不同实验条件下发生改变的染色质纤维结构中的细微变化。

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