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从合成DNA和天然DNA构建DNA分子及文库的递归方法与纠错

Recursive construction and error correction of DNA molecules and libraries from synthetic and natural DNA.

作者信息

Yehezkel Tuval Ben, Linshiz Gregory, Kaplan Shai, Gronau Ilan, Ravid Sivan, Adar Rivka, Shapiro Ehud

机构信息

Department of Biological Chemistry, Weizmann Institute of Science, Rehovot, Israel.

出版信息

Methods Enzymol. 2011;498:207-45. doi: 10.1016/B978-0-12-385120-8.00010-3.

Abstract

Making error-free, custom DNA assemblies from potentially faulty building blocks is a fundamental challenge in synthetic biology. Here, we show how recursion can be used to address this challenge using a recursive procedure that constructs error-free DNA molecules and their libraries from error-prone synthetic oligonucleotides and naturally existing DNA. Specifically, we describe how divide and conquer (D&C), the quintessential recursive problem-solving technique, is applied in silico to divide target DNA sequences into overlapping, albeit error prone, oligonucleotides, and how recursive construction is applied in vitro to combine them to form error-prone DNA molecules. To correct DNA sequence errors, error-free fragments of these molecules are then identified, extracted, and used as new, typically longer and more accurate, inputs to another iteration of the recursive construction procedure; the entire process repeats until an error-free target molecule is formed. The method allows combining synthetic and natural DNA fragments into error-free designer DNA libraries, thus providing a foundation for the design and construction of complex synthetic DNA assemblies.

摘要

从可能存在错误的构建模块中生成无错误的定制DNA组装体是合成生物学中的一项基本挑战。在此,我们展示了如何使用递归方法来应对这一挑战,即通过一种递归程序,从容易出错的合成寡核苷酸和天然存在的DNA构建无错误的DNA分子及其文库。具体而言,我们描述了分治法(D&C)这一典型的递归问题解决技术如何在计算机上应用,将目标DNA序列划分为重叠的、尽管容易出错的寡核苷酸,以及递归构建如何在体外应用,将它们组合形成容易出错的DNA分子。为了纠正DNA序列错误,然后识别、提取这些分子的无错误片段,并将其用作递归构建程序另一轮迭代的新输入,通常更长且更准确;整个过程重复进行,直到形成无错误的目标分子。该方法允许将合成DNA片段和天然DNA片段组合成无错误的设计DNA文库,从而为复杂合成DNA组装体的设计和构建奠定基础。

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