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A Loop‐Based and AGO‐Incorporated Virtual Screening Model Targeting AGO‐Mediated miRNA–mRNA Interactions for Drug Discovery to Rescue Bone Phenotype in Genetically Modified Mice

Several virtual screening models are proposed to screen small molecules only targeting primary miRNAs without selectivity. Few attempts have been made to develop virtual screening strategies for discovering small molecules targeting mature miRNAs. Mature miRNAs and their specific target mRNA can for...

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Autores principales: Zhuo, Zhenjian, Wan, Youyang, Guan, Daogang, Ni, Shuaijian, Wang, Luyao, Zhang, Zongkang, Liu, Jin, Liang, Chao, Yu, Yuanyuan, Lu, Aiping, Zhang, Ge, Zhang, Bao‐Ting
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7341099/
https://www.ncbi.nlm.nih.gov/pubmed/32670749
http://dx.doi.org/10.1002/advs.201903451
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author Zhuo, Zhenjian
Wan, Youyang
Guan, Daogang
Ni, Shuaijian
Wang, Luyao
Zhang, Zongkang
Liu, Jin
Liang, Chao
Yu, Yuanyuan
Lu, Aiping
Zhang, Ge
Zhang, Bao‐Ting
author_facet Zhuo, Zhenjian
Wan, Youyang
Guan, Daogang
Ni, Shuaijian
Wang, Luyao
Zhang, Zongkang
Liu, Jin
Liang, Chao
Yu, Yuanyuan
Lu, Aiping
Zhang, Ge
Zhang, Bao‐Ting
author_sort Zhuo, Zhenjian
collection PubMed
description Several virtual screening models are proposed to screen small molecules only targeting primary miRNAs without selectivity. Few attempts have been made to develop virtual screening strategies for discovering small molecules targeting mature miRNAs. Mature miRNAs and their specific target mRNA can form unique functional loops during argonaute (AGO)‐mediated miRNA–mRNA interactions, which may serve as potential targets for small‐molecule drug discovery. Thus, a loop‐based and AGO‐incorporated virtual screening model is constructed for targeting the loops. The previously published studies have found that miR‐214 can target ATF4 to inhibit osteoblastic bone formation, whereas miR‐214 can target TRAF3 to promote osteoclast activity. By using the virtual model, the top ten candidate small molecules targeting miR‐214‐ATF4 mRNA interactions and top ten candidate small molecules targeting miR‐214‐TRAF3 mRNA interactions are selected, respectively. Based on both in vitro and in vivo data, one small molecule can target miR‐214‐ATF4 mRNA to promote ATF4 protein expression and enhance osteogenic potential, whereas one small molecule can target miR‐214‐TRAF3 mRNA to promote TRAF3 protein expression and inhibit osteoclast activity. These data indicate that the loop‐based and AGO‐incorporated virtual screening model can help to obtain small molecules specifically targeting miRNA–mRNA interactions to rescue bone phenotype in genetically modified mice.
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spelling pubmed-73410992020-07-14 A Loop‐Based and AGO‐Incorporated Virtual Screening Model Targeting AGO‐Mediated miRNA–mRNA Interactions for Drug Discovery to Rescue Bone Phenotype in Genetically Modified Mice Zhuo, Zhenjian Wan, Youyang Guan, Daogang Ni, Shuaijian Wang, Luyao Zhang, Zongkang Liu, Jin Liang, Chao Yu, Yuanyuan Lu, Aiping Zhang, Ge Zhang, Bao‐Ting Adv Sci (Weinh) Full Papers Several virtual screening models are proposed to screen small molecules only targeting primary miRNAs without selectivity. Few attempts have been made to develop virtual screening strategies for discovering small molecules targeting mature miRNAs. Mature miRNAs and their specific target mRNA can form unique functional loops during argonaute (AGO)‐mediated miRNA–mRNA interactions, which may serve as potential targets for small‐molecule drug discovery. Thus, a loop‐based and AGO‐incorporated virtual screening model is constructed for targeting the loops. The previously published studies have found that miR‐214 can target ATF4 to inhibit osteoblastic bone formation, whereas miR‐214 can target TRAF3 to promote osteoclast activity. By using the virtual model, the top ten candidate small molecules targeting miR‐214‐ATF4 mRNA interactions and top ten candidate small molecules targeting miR‐214‐TRAF3 mRNA interactions are selected, respectively. Based on both in vitro and in vivo data, one small molecule can target miR‐214‐ATF4 mRNA to promote ATF4 protein expression and enhance osteogenic potential, whereas one small molecule can target miR‐214‐TRAF3 mRNA to promote TRAF3 protein expression and inhibit osteoclast activity. These data indicate that the loop‐based and AGO‐incorporated virtual screening model can help to obtain small molecules specifically targeting miRNA–mRNA interactions to rescue bone phenotype in genetically modified mice. John Wiley and Sons Inc. 2020-05-28 /pmc/articles/PMC7341099/ /pubmed/32670749 http://dx.doi.org/10.1002/advs.201903451 Text en © 2020 The Authors. Published by WILEY‐VCH Verlag GmbH & Co. KGaA, Weinheim This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Full Papers
Zhuo, Zhenjian
Wan, Youyang
Guan, Daogang
Ni, Shuaijian
Wang, Luyao
Zhang, Zongkang
Liu, Jin
Liang, Chao
Yu, Yuanyuan
Lu, Aiping
Zhang, Ge
Zhang, Bao‐Ting
A Loop‐Based and AGO‐Incorporated Virtual Screening Model Targeting AGO‐Mediated miRNA–mRNA Interactions for Drug Discovery to Rescue Bone Phenotype in Genetically Modified Mice
title A Loop‐Based and AGO‐Incorporated Virtual Screening Model Targeting AGO‐Mediated miRNA–mRNA Interactions for Drug Discovery to Rescue Bone Phenotype in Genetically Modified Mice
title_full A Loop‐Based and AGO‐Incorporated Virtual Screening Model Targeting AGO‐Mediated miRNA–mRNA Interactions for Drug Discovery to Rescue Bone Phenotype in Genetically Modified Mice
title_fullStr A Loop‐Based and AGO‐Incorporated Virtual Screening Model Targeting AGO‐Mediated miRNA–mRNA Interactions for Drug Discovery to Rescue Bone Phenotype in Genetically Modified Mice
title_full_unstemmed A Loop‐Based and AGO‐Incorporated Virtual Screening Model Targeting AGO‐Mediated miRNA–mRNA Interactions for Drug Discovery to Rescue Bone Phenotype in Genetically Modified Mice
title_short A Loop‐Based and AGO‐Incorporated Virtual Screening Model Targeting AGO‐Mediated miRNA–mRNA Interactions for Drug Discovery to Rescue Bone Phenotype in Genetically Modified Mice
title_sort loop‐based and ago‐incorporated virtual screening model targeting ago‐mediated mirna–mrna interactions for drug discovery to rescue bone phenotype in genetically modified mice
topic Full Papers
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7341099/
https://www.ncbi.nlm.nih.gov/pubmed/32670749
http://dx.doi.org/10.1002/advs.201903451
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