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Article: AIEgen-Conjugated Phase-Separating Peptides Illuminate Intracellular RNA through Coacervation-Induced Emission

TitleAIEgen-Conjugated Phase-Separating Peptides Illuminate Intracellular RNA through Coacervation-Induced Emission
Authors
Keywordscoacervation-induced emission
liquid−liquid phase separation
phase-separating peptides
RNA/peptide coacervates
tetraphenylethylene
Issue Date9-May-2023
PublisherAmerican Chemical Society
Citation
ACS Nano, 2023, v. 17, n. 9, p. 8195-8203 How to Cite?
Abstract

Intrinsically disordered peptides drive dynamic liquid-liquid phase separation (LLPS) in membraneless organelles and encode cellular functions in response to environmental stimuli. Engineering design on phase-separating peptides (PSPs) holds great promise for bioimaging, vaccine delivery, and disease theranostics. However, recombinant PSPs are devoid of robust luminogen or suitable cell permeability required for intracellular applications. Here, we synthesize a peptide-based RNA sensor by covalently connecting tetraphenylethylene (TPE), an aggregation-induced emission luminogen (AIEgens), to tandem peptide repeats of (RRASL)n (n = 1, 2, 3). Interestingly, the conjugation of TPE luminogen promotes liquid-liquid phase separation of the peptide repeats, and the minimum coacervation concentration (MCC) of TPE-(RRASL)n is decreased by an order of magnitude, compared to that of the untagged, TPE-free counterparts. Moreover, the luminescence of TPE-(RRASL)n is enhanced by up to 700-fold with increasing RNA concentration, which is attributed to the constricted rotation of the TPE moiety as a result of peptide/RNA coacervates within the droplet phase. Besides, at concentrations above MCC, TPE-(RRASL)n can efficiently penetrate through human gallbladder carcinoma cells (SGC-996), translocate into the cell nucleus, and colocalize with intracellular RNA. These observations suggest that AIEgen-conjugated PSPs can be used as droplet-based biosensors for intracellular RNA imaging through a regime of coacervation-induced emission.


Persistent Identifierhttp://hdl.handle.net/10722/338549
ISSN
2023 Impact Factor: 15.8
2023 SCImago Journal Rankings: 4.593
ISI Accession Number ID

 

DC FieldValueLanguage
dc.contributor.authorYang, S-
dc.contributor.authorYu, H-
dc.contributor.authorXu, X-
dc.contributor.authorYang, T-
dc.contributor.authorWei, Y-
dc.contributor.authorZan, R-
dc.contributor.authorZhang, X-
dc.contributor.authorMa, Q-
dc.contributor.authorShum, HC-
dc.contributor.authorSong, Y -
dc.date.accessioned2024-03-11T10:29:44Z-
dc.date.available2024-03-11T10:29:44Z-
dc.date.issued2023-05-09-
dc.identifier.citationACS Nano, 2023, v. 17, n. 9, p. 8195-8203-
dc.identifier.issn1936-0851-
dc.identifier.urihttp://hdl.handle.net/10722/338549-
dc.description.abstract<p>Intrinsically disordered peptides drive dynamic liquid-liquid phase separation (LLPS) in membraneless organelles and encode cellular functions in response to environmental stimuli. Engineering design on phase-separating peptides (PSPs) holds great promise for bioimaging, vaccine delivery, and disease theranostics. However, recombinant PSPs are devoid of robust luminogen or suitable cell permeability required for intracellular applications. Here, we synthesize a peptide-based RNA sensor by covalently connecting tetraphenylethylene (TPE), an aggregation-induced emission luminogen (AIEgens), to tandem peptide repeats of (RRASL)n (n = 1, 2, 3). Interestingly, the conjugation of TPE luminogen promotes liquid-liquid phase separation of the peptide repeats, and the minimum coacervation concentration (MCC) of TPE-(RRASL)n is decreased by an order of magnitude, compared to that of the untagged, TPE-free counterparts. Moreover, the luminescence of TPE-(RRASL)n is enhanced by up to 700-fold with increasing RNA concentration, which is attributed to the constricted rotation of the TPE moiety as a result of peptide/RNA coacervates within the droplet phase. Besides, at concentrations above MCC, TPE-(RRASL)n can efficiently penetrate through human gallbladder carcinoma cells (SGC-996), translocate into the cell nucleus, and colocalize with intracellular RNA. These observations suggest that AIEgen-conjugated PSPs can be used as droplet-based biosensors for intracellular RNA imaging through a regime of coacervation-induced emission.</p>-
dc.languageeng-
dc.publisherAmerican Chemical Society-
dc.relation.ispartofACS Nano-
dc.rightsThis work is licensed under a Creative Commons Attribution-NonCommercial-NoDerivatives 4.0 International License.-
dc.subjectcoacervation-induced emission-
dc.subjectliquid−liquid phase separation-
dc.subjectphase-separating peptides-
dc.subjectRNA/peptide coacervates-
dc.subjecttetraphenylethylene-
dc.titleAIEgen-Conjugated Phase-Separating Peptides Illuminate Intracellular RNA through Coacervation-Induced Emission-
dc.typeArticle-
dc.identifier.doi10.1021/acsnano.2c12072-
dc.identifier.scopuseid_2-s2.0-85156196358-
dc.identifier.volume17-
dc.identifier.issue9-
dc.identifier.spage8195-
dc.identifier.epage8203-
dc.identifier.eissn1936-086X-
dc.identifier.isiWOS:000980546000001-
dc.identifier.issnl1936-0851-

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