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Engineered PROTAC-CID Systems for Mammalian Inducible Gene Regulation.


ABSTRACT: Gene regulation via chemically induced dimerization (CID) is useful for biomedical research. However, the number, type, versatility, and in vivo applications of CID tools remain limited. Here, we demonstrate the development of proteolysis-targeting chimera-based scalable CID (PROTAC-CID) platforms by systematically engineering the available PROTAC systems for inducible gene regulation and gene editing. Further, we show orthogonal PROTAC-CIDs that can fine-tune gene expression at gradient levels or multiplex biological signals with different logic gating operations. Coupling the PROTAC-CID platform with genetic circuits, we achieve digitally inducible expression of DNA recombinases, base- and prime-editors for transient genome manipulation. Finally, we package a compact PROTAC-CID system into adeno-associated viral vectors for inducible and reversible gene activation in vivo. This work provides a versatile molecular toolbox that expands the scope of chemically inducible gene regulation in human cells and mice.

SUBMITTER: Ma D 

PROVIDER: S-EPMC10162582 | biostudies-literature | 2023 Jan

REPOSITORIES: biostudies-literature

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Engineered PROTAC-CID Systems for Mammalian Inducible Gene Regulation.

Ma Dacheng D   Yuan Qichen Q   Peng Fei F   Paredes Victor V   Zeng Hongzhi H   Osikpa Emmanuel C EC   Yang Qiaochu Q   Peddi Advaith A   Patel Anika A   Liu Megan S MS   Sun Zheng Z   Gao Xue X  

Journal of the American Chemical Society 20230110 3


Gene regulation via chemically induced dimerization (CID) is useful for biomedical research. However, the number, type, versatility, and in vivo applications of CID tools remain limited. Here, we demonstrate the development of proteolysis-targeting chimera-based scalable CID (PROTAC-CID) platforms by systematically engineering the available PROTAC systems for inducible gene regulation and gene editing. Further, we show orthogonal PROTAC-CIDs that can fine-tune gene expression at gradient levels  ...[more]

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