生物
核酸酶
肽核酸
核酸
核酸内切酶
DNA
基因组编辑
计算生物学
分子生物学
限制性酶
基因
遗传学
基因组
作者
Rashid Aman,Muntjeeb M. Syed,Ahmed A. Saleh,Firdaws Melliti,Gundra Sivakrishna Rao,Qiaochu Wang,Tin Maršić,Ahmed Mahas,Magdy M. Mahfouz
摘要
Abstract Gene-editing technologies have revolutionized biotechnology, but current gene editors suffer from several limitations. Here, we harnessed the power of gamma-modified peptide nucleic acids (γPNAs) to facilitate targeted, specific DNA invasion and used T7 endonuclease I (T7EI) to recognize and cleave the γPNA-invaded DNA. Our data show that T7EI can specifically target PNA-invaded linear and circular DNA to introduce double-strand breaks (DSBs). Our PNA-Guided T7EI (PG-T7EI) technology demonstrates that T7EI can be used as a programmable nuclease capable of generating single or multiple specific DSBs in vitro under a broad range of conditions and could be potentially applied for large-scale genomic manipulation. With no protospacer adjacent motif (PAM) constraints and featuring a compact protein size, our PG-T7EI system will facilitate and expand DNA manipulations both in vitro and in vivo, including cloning, large-fragment DNA assembly, and gene editing, with exciting applications in biotechnology, medicine, agriculture, and synthetic biology.
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