Hu Menglu, Zhang Bingni, Shan Yuanyue, Cao Feng, Wang Yihui, Qi Weiwei, Wang Xue, Shen Yuting, Guo Xinyi, Zhang Mengmeng, Tian Tian, Xie Wei, Zhang Mingfeng, Liang Fang, Pei Duanqing, Zhou Xiaoming
School of Life sciences, South China Normal University, Guangzhou, China.
Centre for Regenerative Medicine and Health, Hong Kong Institute of Science & Innovation, Chinese Academy of Sciences, Hong Kong SAR, China.
Nat Commun. 2025 Jul 1;16(1):5939. doi: 10.1038/s41467-025-61094-5.
The regulation of CRISPR‒Cas activity is critical for developing advanced biotechnologies. Optical control of CRISPR‒Cas system activity can be achieved by modulation of Cas proteins or guide RNA (gRNA), but these approaches either require complex protein engineering modifications or customization of the optically modulated gRNAs according to the target. Here, we present a method, termed photocleavable phosphorothioate DNA (PC&PS DNA)-mediated regulation of CRISPR‒Cas activity (DNACas), that is versatile and overcomes the limitations of conventional methods. In DNACas, CRISPR‒Cas activity is silenced by the affinity binding of PC&PS DNA and restored through light-triggered chemical bond breakage of PC&PS DNA. The universality of DNACas is demonstrated by adopting the PC&PS DNA to regulate various CRISPR‒Cas enzymes, achieving robust light-switching performance. DNACas is further adopted to develop a light-controlled one-pot LAMP-BrCas12b detection method and a spatiotemporal gene editing strategy. We anticipate that DNACas could be employed to drive various biotechnological advances.
CRISPR-Cas活性的调控对于发展先进生物技术至关重要。通过对Cas蛋白或引导RNA(gRNA)进行调控,可以实现对CRISPR-Cas系统活性的光学控制,但这些方法要么需要复杂的蛋白质工程修饰,要么需要根据靶标定制光学调控的gRNA。在此,我们提出了一种称为光可切割硫代磷酸酯DNA(PC&PS DNA)介导的CRISPR-Cas活性调控(DNACas)的方法,该方法具有通用性,克服了传统方法的局限性。在DNACas中,CRISPR-Cas活性通过PC&PS DNA的亲和结合而沉默,并通过光触发的PC&PS DNA化学键断裂得以恢复。通过采用PC&PS DNA调控各种CRISPR-Cas酶,实现了强大的光开关性能,证明了DNACas的通用性。DNACas进一步被用于开发一种光控一锅法LAMP-BrCas12b检测方法和一种时空基因编辑策略。我们预计DNACas可用于推动各种生物技术的进步。