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通过排阻色谱法纯化RNA-DNA杂交体。

Purification of RNA-DNA hybrids by exclusion chromatography.

作者信息

Persson H, Perricaudet M, Tolun A, Philipson L, Pettersson U

出版信息

J Biol Chem. 1979 Aug 25;254(16):7999-8003.

PMID:468802
Abstract

A simple method for selection of RNA-DNA hybrids has been developed and applied to the purification of adenovirus-specific messenger RNA. Cytoplasmic RNA prepared from adenovirus type 2 (ad2)-infected HeLa cells or from an ad2-transformed rat cell line was hybridized in solution to the complementary strands of ad2 DNA. The hybridization mixture was subsequently fractionated by chromatography on a Sepharose 2B column. The intact probe DNA as well as the RNA-DNA hybrids are excluded from the gel matrix and elute with the void volume. Nonhybridized RNA, in contrast, is included into the gel matrix and elutes as a broad peak well separated from the excluded fractions. Fractions corresponding to the void volume, were collected and the RNA-DNA hybrids were denatured in 90% formamide. The selected RNA was separated from the DNA by affinity chromatography on poly(U)-Sepharose. Restriction endonuclease fragments of DNA with a large enough size to make them excluded from the agarose column were also used for hybridization. In these experiments hybridizations were carried out under conditions which would allow R-loop formation (Thomas, M., White, R.L., and Davis, R.W. (1976) Proc. Natl. Acad. Sci. U.S.A. 73, 2294-2298) and the hybridized RNA was separated from unhybridized RNA by Sepharose chromatography. The validity of the method was demonstrated by programming an in vitro protein-synthesizing system with selected RNA.

摘要

已开发出一种选择RNA-DNA杂交体的简单方法,并将其应用于腺病毒特异性信使RNA的纯化。从感染2型腺病毒(ad2)的HeLa细胞或ad2转化的大鼠细胞系制备的细胞质RNA在溶液中与ad2 DNA的互补链杂交。随后,杂交混合物通过在琼脂糖2B柱上进行色谱分离。完整的探针DNA以及RNA-DNA杂交体被排除在凝胶基质之外,并以空体积洗脱。相比之下,未杂交的RNA被包含在凝胶基质中,并作为一个与排除部分明显分开的宽峰洗脱。收集与空体积相对应的部分,RNA-DNA杂交体在90%甲酰胺中变性。通过在聚(U)-琼脂糖上进行亲和色谱,将选定的RNA与DNA分离。具有足够大尺寸以使其被排除在琼脂糖柱之外的DNA限制性内切酶片段也用于杂交。在这些实验中,杂交是在允许形成R环的条件下进行的(托马斯,M.,怀特,R.L.,和戴维斯,R.W.(1976年)《美国国家科学院院刊》73,2294-2298),并且通过琼脂糖色谱将杂交的RNA与未杂交的RNA分离。通过用选定的RNA对体外蛋白质合成系统进行编程,证明了该方法的有效性。

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