Related Experiment Video
Updated: Feb 2, 2026

A Customizable Protocol for String Assembly gRNA Cloning STAgR
Published on: December 26, 2018
T5 exonuclease-dependent assembly offers a low-cost method for efficient cloning and site-directed mutagenesis
Yongzhen Xia1, Kai Li1, Jingjing Li1
1State Key Laboratory of Microbial Technology, Shandong University, 72 Binhai Road, Qingdao 266237, P.R. China.
Abstract:
The assembly of DNA fragments with homologous arms is becoming popular in routine cloning. For an in vitro assembly reaction, a DNA polymerase is often used either alone for its 3'-5' exonuclease activity or together with a 5'-3' exonuclease for its DNA polymerase activity. Here, we present a 'T5 exonuclease DNA assembly' (TEDA) method that only uses a 5'-3' exonuclease. DNA fragments with short homologous ends were treated by T5 exonuclease and then transformed into Escherichia coli to produce clone colonies. The cloning efficiency was similar to that of the commercial In-Fusion method employing a proprietary DNA polymerase, but higher than that of the Gibson method utilizing T5 exonuclease, Phusion DNA polymerase, and DNA ligase. It also assembled multiple DNA fragments and did simultaneous site-directed mutagenesis at multiple sites. The reaction mixture was simple, and each reaction used 0.04 U of T5 exonuclease that cost 0.25 US cents. The simplicity, cost effectiveness, and cloning efficiency should promote its routine use, especially for labs with a budget constraint. TEDA may trigger further development of DNA assembly methods that employ single exonucleases.
Related Concept Videos
Reproductive Cloning
Somatic Cell Nuclear Transfer
In SCNT, an egg cell is taken from an animal and its nucleus is removed, creating an enucleated egg. Then a somatic...
In-vitro Mutagenesis
Contact-dependent Signaling
Gap Junctions
In animal cells, gap junctions are formed...
Microbial Growth Measurement: Direct Methods
Cloning of Dolly the Sheep
Frequency-dependent Selection

