mtmt
Magyar Tudományos Művek Tára
XML
JSON
Átlépés a keresőbe
In English
A compact, versatile drug-induced splicing switch system with minimal background expression
Chi, Y.
;
Lu, X.
;
Li, S.
;
Wang, J.
;
Xi, J.
;
Zhou, X.
;
Tang, C.
;
Chen, M.
;
Yuan, H.
;
Lin, S.
;
Xiao, Y.
;
Lai, L. ✉
;
Zou, Q. ✉
Angol nyelvű Szakcikk (Folyóiratcikk) Tudományos
Megjelent:
CELL REPORTS METHODS 2667-2375 2667-2375
4
(9)
Paper: 100842
2024
SJR Scopus - Biochemistry: D1
Azonosítók
MTMT: 35611056
DOI:
10.1016/j.crmeth.2024.100842
WoS:
001317645300001
Scopus:
85204510309
Gene-switch techniques hold promising applications in contemporary genetics research, particularly in disease treatment and genetic engineering. Here, we developed a compact drug-induced splicing system that maintains low background using a human ubiquitin C (hUBC) promoter and optimized drug (LMI070) binding sequences based on the Xon switch system. To ensure precise subcellular localization of the protein of interest (POI), we inserted a 2A self-cleaving peptide between the extra N-terminal peptide and POI. This streamlined and optimized switch system, named miniXon2G, effectively regulated POIs in different subcellular localizations both in vitro and in vivo. Furthermore, miniXon2G could be integrated into endogenous gene loci, resulting in precise, reversible regulation of target genes by both endogenous regulators and drugs. Overall, these findings highlight the performance of miniXon2G in controlling protein expression with great potential for general applicability to diverse biological scenarios requiring precise and delicate regulation. © 2024 The Authors
Idézett közlemények (1)
Hivatkozás stílusok:
IEEE
ACM
APA
Chicago
Harvard
CSL
Másolás
Nyomtatás
2025-02-13 19:13
×
Lista exportálása irodalomjegyzékként
Hivatkozás stílusok:
IEEE
ACM
APA
Chicago
Harvard
Nyomtatás
Másolás