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噬菌体噬菌斑中噬菌体组装中间体的凝胶电泳分析。

Gel electrophoretic analysis of bacteriophage assembly intermediates in bacteriophage plaques.

作者信息

Serwer P, Hayes S J, Watson R H, Khan S A

机构信息

Department of Biochemistry, University of Texas Health Science Center, San Antonio 78284-7760, USA.

出版信息

Appl Theor Electrophor. 1995;4(4):211-7.

PMID:7599257
Abstract

To increase the efficiency with which the phenotype of bacteriophage mutants is determined by gel electrophoresis, procedures are developed here for the preparation of the contents of bacteriophage plaques for gel electrophoresis. During the formation of plaques, the plaque-supporting upper layer gel is changed from the traditional agar gel to a gel made of a mixture of low-melt agaroses; the lower layer gel is eliminated. To extract particles from plaques, the plaque-supporting gel is disintegrated by both shaking and raising the temperature to 39-43 degrees C. During shaking, the gel is broken to domains that are 5-30 microns in diameter. After extraction, the contents of plaques are subjected to two electrophoretic analyses: (1) Nondenaturing agarose gel electrophoresis is performed after treatment with DNase. This procedure reveals both mature bacteriophage and immature capsids. (2) Nondenaturing agarose gel electrophoresis is performed after release of DNA from DNase-treated capsids. This latter procedure reveals both completely packaged (mature length) DNA and incompletely packaged (shorter than mature length) DNA. The amount of mature length DNA released per 2-3 mm plaque is 10-60 ng. In agreement with results previously obtained in liquid culture, most incompletely packaged DNA has the right, but not the left, mature T7 DNA end.

摘要

为提高通过凝胶电泳确定噬菌体突变体表型的效率,本文开发了用于制备噬菌体噬菌斑内容物以进行凝胶电泳的方法。在噬菌斑形成过程中,支持噬菌斑的上层凝胶从传统的琼脂凝胶改为由低熔点琼脂糖混合物制成的凝胶;下层凝胶被去除。为了从噬菌斑中提取颗粒,通过摇晃和将温度升至39 - 43摄氏度来分解支持噬菌斑的凝胶。摇晃过程中,凝胶破碎成直径为5 - 30微米的区域。提取后,对噬菌斑内容物进行两次电泳分析:(1)用DNase处理后进行非变性琼脂糖凝胶电泳。此步骤可显示成熟噬菌体和未成熟衣壳。(2)从经DNase处理的衣壳中释放DNA后进行非变性琼脂糖凝胶电泳。后一步骤可显示完全包装(成熟长度)的DNA和未完全包装(短于成熟长度)的DNA。每2 - 3毫米噬菌斑释放的成熟长度DNA量为10 - 60纳克。与先前在液体培养中获得的结果一致,大多数未完全包装的DNA具有正确的,但不是左侧的,成熟T7 DNA末端。

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