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DNA改组的简易方法:其在健康科学中的潜在意义。

Easy approach to DNA shuffling: its potential implication in health sciences.

作者信息

Pokhrel Subarna, Lamsal Madhab, Wang Zheng Xiang

机构信息

Research Laboratory for Agricultural Biotechnology and Biochemistry, Universal Science College, Kathmandu, Nepal.

出版信息

Nepal Med Coll J. 2006 Jun;8(2):136-9.

Abstract

Directed evolution experiments rely on the cyclical application of mutagenesis, screening and amplifications in a test tube. During the laboratory evolution of biological molecules, recombination has been used to generate novel sequences in a process known as DNA shuffling. DNA shuffling is a recently developed technique that allows accelerated and directed protein evolution for desired properties in vitro, which recombines and evolves genes to rapidly obtain molecules with improved biological activity and fitness. DNA shuffling is generally achieved by DNaseI treatment and by PCR. This has led to the creation of novel proteins for a wide range of applications. The use of improved enzymes for medical, industrial and environmental purposes is prevalent today, and will be expanding. New applications in vaccine development and disease diagnosis are among the key features of DNA shuffling. However, directed evolution currently requires an uncertain, typically large number of labor-intensive and expensive experimental cycles before proteins with improved function are identified. A simplified and low-cost DNA shuffling protocol for random recombination of homologous genes in vitro is described here.

摘要

定向进化实验依赖于在试管中循环应用诱变、筛选和扩增。在生物分子的实验室进化过程中,重组已被用于在一种称为DNA改组的过程中产生新的序列。DNA改组是一种最近开发的技术,它允许在体外针对所需特性进行加速和定向的蛋白质进化,该技术重组并进化基因以快速获得具有改善的生物活性和适应性的分子。DNA改组通常通过DNaseI处理和PCR来实现。这已导致产生了用于广泛应用的新型蛋白质。如今,将改良酶用于医学、工业和环境目的的情况很普遍,并且还将不断扩大。疫苗开发和疾病诊断中的新应用是DNA改组的关键特征之一。然而,目前定向进化在鉴定出功能得到改善的蛋白质之前,需要进行不确定的、通常大量的劳动密集型且昂贵的实验循环。本文描述了一种用于体外同源基因随机重组的简化且低成本的DNA改组方案。

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