内切酶
限制性酶
DNA
砖
计算生物学
限制
生物
遗传学
核酸内切酶
工程类
材料科学
复合材料
机械工程
作者
Shiyuan Li,Guoping Zhao,Jin Wang
标识
DOI:10.1021/acssynbio.6b00114
摘要
So far, several DNA assembly standards have been developed, enabling scientists to conveniently share and modify characterized DNA parts. However, a majority of the restriction endonucleases used in these standards bear short recognition sites (e.g., 6 bps in BioBrick standard), which are widely distributed and need to be removed before further construction, causing much inconvenience. Although homing endonucleases, which recognize long DNA sequences, can be used for DNA assembly (e.g., iBrick standard), long scars will be left between parts, limiting their application. Here, we introduce a new DNA assembly standard, namely C-Brick, which employs the newly identified class 2 type V CRISPR-Cas systems protein Cpf1 endonuclease. C-Brick integrates both advantages of long recognition sites and short scars. With C-Brick standard, three chromoprotein cassettes were assembled and further expressed in Escherichia coli, producing colorful pigments. Moreover, C-Brick standard is also partially compatible with the BglBrick and BioBrick standards.
科研通智能强力驱动
Strongly Powered by AbleSci AI