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DNA诱变方法概述

Approaches to DNA mutagenesis: an overview.

作者信息

Ling M M, Robinson B H

机构信息

Department of Genetics, Hospital for Sick Children, Toronto, Ontario, Canada.

出版信息

Anal Biochem. 1997 Dec 15;254(2):157-78. doi: 10.1006/abio.1997.2428.

Abstract

In the last several years, the use of double-stranded DNA templates together with thermostable-polymerase PCR has essentially replaced the use single-stranded DNA templates using the thermolabile polymerase for in vitro mutagenesis. Numerous PCR methods are now available, such as overlap-extension PCR, megaprimer PCR, and inverse PCR. All these PCR methods are reliable, effective, and convenient, although they are more prone to high rates of spontaneous error in mutant DNAs than are methods using thermolabile polymerases. Some improvements, such as the introduction of methylated templates, have been employed to minimize PCR errors. On the other hand, because of the introduction of many selection measures (e.g., restoration of antibiotic resistance, restoration of replication origin and unique site elimination), both double-stranded and single-stranded DNAs can now be used as templates for mutagenesis using thermolabile polymerase methods. For PCR methods, selection measures such as nested PCR has developed. All these selection measures have greatly improved the efficiency of mutagenesis by removing wild-type templates prior to transformation. Many efficient methods are available for both SDM and REM. Mutations can be introduce in vitro or in vivo, either by mutagenic primers or by erroneous DNA synthesis. Thus, choices largely depend on the experimental needs and resources of the investigator.

摘要

在过去几年中,双链DNA模板与热稳定聚合酶PCR的联用已基本取代了使用热不稳定聚合酶的单链DNA模板进行体外诱变。现在有许多PCR方法,如重叠延伸PCR、大引物PCR和反向PCR。所有这些PCR方法都是可靠、有效且方便的,尽管与使用热不稳定聚合酶的方法相比,它们在突变DNA中更容易出现较高的自发错误率。已经采用了一些改进措施,如引入甲基化模板,以尽量减少PCR错误。另一方面,由于引入了许多选择措施(如抗生素抗性的恢复、复制起点的恢复和独特位点的消除),现在双链和单链DNA都可以用作使用热不稳定聚合酶方法进行诱变的模板。对于PCR方法,已经开发了如巢式PCR等选择措施。所有这些选择措施通过在转化前去除野生型模板,极大地提高了诱变效率。对于定点诱变(SDM)和随机诱变(REM)都有许多有效的方法。突变可以通过诱变引物或错误的DNA合成在体外或体内引入。因此,选择很大程度上取决于研究者的实验需求和资源。

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