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Non-invasive and high-throughput interrogation of exon-specific isoform expression

Authors :
Milica Živanić
Sigrid C. Schwarz
Tabea Strauß
Peter Heutink
Bianca Eßwein
Dominic Schwarz
Martin Zirngibl
Marcus Conrad
Christian Grätz
Francesco Leandro Vaccaro
Luisa Krumwiede
Julian Geilenkeuser
Wolfgang Wurst
Simone Göppert
Sebastian Doll
Florian Giesert
Christoph Gruber
Günter U. Höglinger
Tobias Santl
Gerald Raffl
Eva Magdalena Beck
Gil G. Westmeyer
Maren Beyer
Valentin Evsyukov
Dong-Jiunn Jeffery Truong
Enikő Baligács
Deniz Tümen
Johann Dietmar Körner
Niklas Armbrust
Teeradon Phlairaharn
Eva-Maria Lederer
Source :
Nature cell biology 23(6), 652-663 (2021). doi:10.1038/s41556-021-00678-x, Nat. Cell Biol. 23, 652-663 (2021), Nature Cell Biology
Publication Year :
2021
Publisher :
Nature America, 2021.

Abstract

Expression of exon-specific isoforms from alternatively spliced mRNA is a fundamental mechanism that substantially expands the proteome of a cell. However, conventional methods to assess alternative splicing are either consumptive and work-intensive or do not quantify isoform expression longitudinally at the protein level. Here, we therefore developed an exon-specific isoform expression reporter system (EXSISERS), which non-invasively reports the translation of exon-containing isoforms of endogenous genes by scarlessly excising reporter proteins from the nascent polypeptide chain through highly efficient, intein-mediated protein splicing. We applied EXSISERS to quantify the inclusion of the disease-associated exon 10 in microtubule-associated protein tau (MAPT) in patient-derived induced pluripotent stem cells and screened Cas13-based RNA-targeting effectors for isoform specificity. We also coupled cell survival to the inclusion of exon 18b of FOXP1, which is involved in maintaining pluripotency of embryonic stem cells, and confirmed that MBNL1 is a dominant factor for exon 18b exclusion. EXSISERS enables non-disruptive and multimodal monitoring of exon-specific isoform expression with high sensitivity and cellular resolution, and empowers high-throughput screening of exon-specific therapeutic interventions.<br />Truong et al. developed a cell-based reporter system, EXSISERS, that enables non-invasive quantification of the protein expression levels of exon-specific isoforms via intein-mediated protein splicing.

Details

Language :
English
Database :
OpenAIRE
Journal :
Nature cell biology 23(6), 652-663 (2021). doi:10.1038/s41556-021-00678-x, Nat. Cell Biol. 23, 652-663 (2021), Nature Cell Biology
Accession number :
edsair.doi.dedup.....bf5609f79f3c87eed1e24995d99120a3
Full Text :
https://doi.org/10.1038/s41556-021-00678-x