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1.
Nucleic Acids Res ; 49(13): 7280-7291, 2021 07 21.
Artículo en Inglés | MEDLINE | ID: mdl-34233000

RESUMEN

Rational design of aptamers to incorporate unnatural nucleotides and special chemical moieties can expand their functional complexity and diversity. Spiegelmer (L-RNA aptamer) is a unique class of aptamer that is composed of unnatural L-RNA nucleotides, and so far there are limited L-RNA aptamer candidates and applications being reported. Moreover, the target binding properties of current L-RNA aptamers require significant improvement. Here, using L-Apt.4-1c as an example, we develop a simple and robust strategy to generate the first circular L-RNA aptamer, cycL-Apt.4-1c, quantitatively, demonstrate substantial enhancement in binding affinity and selectivity toward its target, and notably report novel applications of circular L-RNA aptamer in controlling RNA-protein interaction, and gene activity including telomerase activity and gene expression. Our approach and findings will be applicable to any L-RNA aptamers and open up a new avenue for diverse applications.


Asunto(s)
Aptámeros de Nucleótidos/química , ARN Circular/química , Química Clic , Ciclización , ARN Helicasas DEAD-box/metabolismo , Regulación de la Expresión Génica , Conformación de Ácido Nucleico , ARN , Estabilidad del ARN , Telomerasa/antagonistas & inhibidores
2.
Nucleic Acids Res ; 49(10): 5426-5450, 2021 06 04.
Artículo en Inglés | MEDLINE | ID: mdl-33772593

RESUMEN

G-quadruplexes (G4s) are non-classical DNA or RNA secondary structures that have been first observed decades ago. Over the years, these four-stranded structural motifs have been demonstrated to have significant regulatory roles in diverse biological processes, but challenges remain in detecting them globally and reliably. Compared to DNA G4s (dG4s), the study of RNA G4s (rG4s) has received less attention until recently. In this review, we will summarize the innovative high-throughput methods recently developed to detect rG4s on a transcriptome-wide scale, highlight the many novel and important functions of rG4 being discovered in vivo across the tree of life, and discuss the key biological questions to be addressed in the near future.


Asunto(s)
G-Cuádruplex , Genómica/métodos , ARN/química , Animales , Bacterias/genética , Técnicas Genéticas , Humanos , Plantas/genética , Virus/genética
3.
Angew Chem Int Ed Engl ; 61(52): e202203553, 2022 12 23.
Artículo en Inglés | MEDLINE | ID: mdl-36300875

RESUMEN

RNA G-quadruplex (rG4) structures in the 5' untranslated region (5'UTR) play crucial roles in fundamental cellular processes. ADAR is an important enzyme that binds to double-strand RNA and accounts for the conversion of Adenosine to Inosine in RNA editing. However, so far there is no report on the formation and regulatory role of rG4 on ADAR expression. Here, we identify and characterize a thermostable rG4 structure within the 5'UTR of the ADAR1 mRNA and demonstrate its formation and inhibitory role on translation in reporter gene and native gene constructs. We reveal rG4-specific helicase DHX36 interacts with this rG4 in vitro and in cells under knockdown and knockout conditions by GTFH (G-quadruplex-triggered fluorogenic hybridization) probes and modulates translation in an rG4-dependent manner. Our results further substantiate the rG4 structure-DHX36 protein interaction in cells and highlight rG4 to be a key player in controlling ADAR1 translation.


Asunto(s)
G-Cuádruplex , Regiones no Traducidas 5' , ARN Mensajero/metabolismo
4.
RNA Biol ; 17(7): 903-917, 2020 07.
Artículo en Inglés | MEDLINE | ID: mdl-32338139

RESUMEN

We recently developed the rG4-seq method to detect and map in vitro RNA G-quadruplex (rG4s) structures on a transcriptome-wide scale. rG4-seq of purified human HeLa RNA has revealed many non-canonical rG4s and the effects adjacent sequences have on rG4 formation. In this study, we aimed to improve the outcomes and false-positive discrimination in rG4-seq experiments using a bioinformatic approach. By establishing connections between rG4-seq library preparation chemistry and the underlying properties of sequencing data, we identified how to mitigate indigenous sampling errors and background noise in rG4-seq. We applied these findings to develop a novel bioinformatics pipeline named rG4-seeker (https://github.com/TF-Chan-Lab/rG4-seeker), which uses tailored noise models to autonomously assess and optimize rG4 detections in a replicate-independent manner. Compared with previous methods, rG4-seeker exhibited better false-positive discrimination and improved sensitivity for non-canonical rG4s. Using rG4-seeker, we identified novel features in rG4 formation that were missed previously. rG4-seeker provides a reliable and sensitive approach for rG4-seq investigations, laying the foundations for further elucidation of rG4 biology.


Asunto(s)
Biología Computacional/métodos , G-Cuádruplex , Motivos de Nucleótidos , ARN/química , Programas Informáticos , Perfilación de la Expresión Génica/métodos , Genómica/métodos , Modelos Estadísticos , Reproducibilidad de los Resultados , Transcriptoma
5.
Chem Commun (Camb) ; 59(53): 8230-8233, 2023 Jun 29.
Artículo en Inglés | MEDLINE | ID: mdl-37309572

RESUMEN

We identify and characterize an RNA G-quadruplex (rG4) structure motif in the human microRNA 638 (hsa-miR-638). We investigate the formation and role of this rG4 in vitro and in cells, and reveal that it inhibits the miR-638 and MEF2C messenger RNA interaction and controls gene expression at the translational level.


Asunto(s)
G-Cuádruplex , MicroARNs , Humanos , ARN Mensajero/genética , ARN Mensajero/metabolismo , MicroARNs/genética , ARN/química , Expresión Génica
6.
Methods Enzymol ; 691: 63-80, 2023.
Artículo en Inglés | MEDLINE | ID: mdl-37914452

RESUMEN

RNA G-quadruplexes (rG4s) are non-canonical RNA secondary structures that were first reported several decades ago. Latest studies have suggested that they are widespread in the transcriptomes of diverse species, and they have been demonstrated to have key roles in various fundamental cellular processes. Among the RNA secondary structure probing assays developed recently, Reverse transcriptase stalling (RTS) and selective 2'-hydroxyl acylation analyzed by lithium ion-based primer extension (SHALiPE) enabled the identification and characterization of distinct structural features of an rG4 structure of interest. Herein, we present an experimental protocol describing in detail the procedures involved in the preparation of in vitro transcribed RNAs, buffers, and reagents for RTS and SHALiPE assays, as well as performing RTS and SHALiPE assays, to examine the formation of rG4 and reveal the rG4 structural conformation at nucleotide resolution in vitro. RTS and SHALiPE assays can be performed by an experienced molecular biologist or chemical biologist with a basic understanding of nucleic acids. The duration for the preparation of in vitro transcription and RNA preparation is around 2 days, and the duration for RTS and SHALiPE assays is approximately 5 h.


Asunto(s)
G-Cuádruplex , ARN , ARN/química , ADN Polimerasa Dirigida por ARN , Transcriptoma , Nucleótidos
7.
ACS Appl Mater Interfaces ; 14(27): 30582-30594, 2022 Jul 13.
Artículo en Inglés | MEDLINE | ID: mdl-35762921

RESUMEN

Guanine quadruplex (G4) structure is a four-stranded nucleic acid secondary structure motif with unique chemical properties and important biological roles. Amyloid precursor protein (APP) is an Alzheimer's disease (AD)-related gene, and recently, we reported the formation of RNA G4 (rG4) at the 3'UTR of APP mRNA and demonstrated its repressive role in translation. Herein, we apply rG4-SELEX to develop a novel L-RNA aptamer, L-Apt.8f, which binds to APP 3'UTR D-rG4 strongly with subnanomolar affinity. We structurally characterize the aptamer and find that it contains a thermostable and parallel G4 motif, and mutagenesis analysis identifies the key nucleotides that are involved in the target recognition. We also reveal that the L-Apt.8f-APP D-rG4 interaction is enantiomeric-, magnesium ion-, and potassium ion-dependent. Notably, L-Apt.8f preferentially recognizes APP rG4 over other structural motifs, and it can control the APP reporter gene and native transcript translation in cells. Our work introduces a novel strategy and reports a new L-aptamer candidate to target APP 3'UTR rG4 structure, which laid the foundation for further applying L-RNA as an important class of biomolecule for practical L-aptamer-based targeting and controlling of gene expression in cells.


Asunto(s)
Aptámeros de Nucleótidos , G-Cuádruplex , Regiones no Traducidas 3' , Precursor de Proteína beta-Amiloide/genética , Precursor de Proteína beta-Amiloide/metabolismo , Aptámeros de Nucleótidos/química , Expresión Génica
8.
Chem Sci ; 10(48): 11095-11102, 2019 Dec 28.
Artículo en Inglés | MEDLINE | ID: mdl-32206258

RESUMEN

RNA G-quadruplexes (rG4s) are emerging structural motifs that are of pivotal importance in chemistry and biology; however, the current structural information of rG4s is limited, with their folding status and functions in cells remaining elusive. Here, we develop and employ a multi-disciplinary approach to characterize the structure, formation and function of an individual rG4 of interest in vitro and in cells. We apply this strategy to a biologically important rG4 in amyloid precursor protein (APP) transcript and reveal distinct structural features of APP rG4. Notably, we visualize the formation of APP rG4 in cells using an APP-specific G-quadruplex-triggered fluorogenic hybridization (GTFH) probe and report that the regulatory role of APP rG4 in translation is dependent on rG4 thermostability, providing evidence to the existence and significance of the stable rG4 structure in gene regulation.

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