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首页> 外文期刊>ACS Synthetic Biology >Programmable CRISPR-Cas Repression, Activation, and Computation with Sequence-Independent Targets and Triggers
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Programmable CRISPR-Cas Repression, Activation, and Computation with Sequence-Independent Targets and Triggers

机译:可编程CRISPR-CAS抑制,激活和使用序列独立的目标和触发器计算

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摘要

The programmability of CRISPR-derived Cas9 as a sequence-specific DNA-targeting protein has made it a powerful tool for genomic manipulation in biological research and translational applications. Cas9 activity can be programmably engineered to respond to nucleic acids, but these efforts have focused primarily on single-input control of Cas9, and until recently, they were limited by sequence dependence between parts of the guide RNA and the sequence to be detected. Here, we not only design and present DNA- and RNA-sensing conditional guide RNA (cgRNA) that have no such sequence constraints, but also demonstrate a complete set of logical computations using these designs on DNA and RNA sequence inputs, including AND, OR, NAND, and NOR. The development of sequence-independent nucleic acid-sensing CRISPR-Cas9 systems with multi-input logic computation capabilities could lead to improved genome engineering and regulation as well as the construction of synthetic circuits with broader functionality.
机译:作为序列特异性DNA靶向蛋白的CRISPR衍生的CAS9的可编程性使其成为生物研究和翻译应用中的基因组操纵的强大工具。 CAS9活性可以是可编程设计的以响应核酸,但这些努力主要集中在CAS9的单输入控制上,直到最近,它们受到导向RNA部分之间的序列依赖性的限制,并且待检测的序列。在这里,我们不仅设计和呈现没有这种序列约束的DNA和RNA感应的条件引导RNA(CGRNA),而且还使用这些设计在DNA和RNA序列输入上的完整逻辑计算集,包括和或,nand,也不。具有多输入逻辑计算能力的序列无关的核酸感应CRISPR-CAS9系统的开发可能导致改进的基因组工程和调节以及具有更广泛功能的合成电路的构造。

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