解旋酶
化学
偶氮苯
DNA
生物物理学
蛋白质工程
功能(生物学)
分子
生物化学
细胞生物学
核糖核酸
基因
生物
有机化学
酶
作者
Dmitriy G. Bobrovnikov,Monika A. Makurath,Clara Wolfe,Yann R. Chemla,Taekjip Ha
摘要
Engineering a protein variant with a desired role relies on deep knowledge of the relationship between a protein's native structure and function. Using our structural understanding of a regulatory subdomain found in a family of DNA helicases, we engineered novel helicases for which the subdomain orientation is designed to switch between unwinding-inactive and -active conformations upon trans–cis isomerization of an azobenzene-based crosslinker. This on-demand light-based conformational control directly alters helicase activity as demonstrated by both bulk phase experiments and single-molecule optical tweezers analysis of one of the engineered helicases. The "opto-helicase" may be useful in future applications that require spatiotemporal control of DNA hybridization states.
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