Cargando…

Defining RNA–Small Molecule Affinity Landscapes Enables Design of a Small Molecule Inhibitor of an Oncogenic Noncoding RNA

[Image: see text] RNA drug targets are pervasive in cells, but methods to design small molecules that target them are sparse. Herein, we report a general approach to score the affinity and selectivity of RNA motif–small molecule interactions identified via selection. Named High Throughput Structure–...

Descripción completa

Detalles Bibliográficos
Autores principales: Velagapudi, Sai Pradeep, Luo, Yiling, Tran, Tuan, Haniff, Hafeez S., Nakai, Yoshio, Fallahi, Mohammad, Martinez, Gustavo J., Childs-Disney, Jessica L., Disney, Matthew D.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Chemical Society 2017
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5364451/
https://www.ncbi.nlm.nih.gov/pubmed/28386598
http://dx.doi.org/10.1021/acscentsci.7b00009
_version_ 1782517321761292288
author Velagapudi, Sai Pradeep
Luo, Yiling
Tran, Tuan
Haniff, Hafeez S.
Nakai, Yoshio
Fallahi, Mohammad
Martinez, Gustavo J.
Childs-Disney, Jessica L.
Disney, Matthew D.
author_facet Velagapudi, Sai Pradeep
Luo, Yiling
Tran, Tuan
Haniff, Hafeez S.
Nakai, Yoshio
Fallahi, Mohammad
Martinez, Gustavo J.
Childs-Disney, Jessica L.
Disney, Matthew D.
author_sort Velagapudi, Sai Pradeep
collection PubMed
description [Image: see text] RNA drug targets are pervasive in cells, but methods to design small molecules that target them are sparse. Herein, we report a general approach to score the affinity and selectivity of RNA motif–small molecule interactions identified via selection. Named High Throughput Structure–Activity Relationships Through Sequencing (HiT-StARTS), HiT-StARTS is statistical in nature and compares input nucleic acid sequences to selected library members that bind a ligand via high throughput sequencing. The approach allowed facile definition of the fitness landscape of hundreds of thousands of RNA motif–small molecule binding partners. These results were mined against folded RNAs in the human transcriptome and identified an avid interaction between a small molecule and the Dicer nuclease-processing site in the oncogenic microRNA (miR)-18a hairpin precursor, which is a member of the miR-17-92 cluster. Application of the small molecule, Targapremir-18a, to prostate cancer cells inhibited production of miR-18a from the cluster, de-repressed serine/threonine protein kinase 4 protein (STK4), and triggered apoptosis. Profiling the cellular targets of Targapremir-18a via Chemical Cross-Linking and Isolation by Pull Down (Chem-CLIP), a covalent small molecule–RNA cellular profiling approach, and other studies showed specific binding of the compound to the miR-18a precursor, revealing broadly applicable factors that govern small molecule drugging of noncoding RNAs.
format Online
Article
Text
id pubmed-5364451
institution National Center for Biotechnology Information
language English
publishDate 2017
publisher American Chemical Society
record_format MEDLINE/PubMed
spelling pubmed-53644512017-04-06 Defining RNA–Small Molecule Affinity Landscapes Enables Design of a Small Molecule Inhibitor of an Oncogenic Noncoding RNA Velagapudi, Sai Pradeep Luo, Yiling Tran, Tuan Haniff, Hafeez S. Nakai, Yoshio Fallahi, Mohammad Martinez, Gustavo J. Childs-Disney, Jessica L. Disney, Matthew D. ACS Cent Sci [Image: see text] RNA drug targets are pervasive in cells, but methods to design small molecules that target them are sparse. Herein, we report a general approach to score the affinity and selectivity of RNA motif–small molecule interactions identified via selection. Named High Throughput Structure–Activity Relationships Through Sequencing (HiT-StARTS), HiT-StARTS is statistical in nature and compares input nucleic acid sequences to selected library members that bind a ligand via high throughput sequencing. The approach allowed facile definition of the fitness landscape of hundreds of thousands of RNA motif–small molecule binding partners. These results were mined against folded RNAs in the human transcriptome and identified an avid interaction between a small molecule and the Dicer nuclease-processing site in the oncogenic microRNA (miR)-18a hairpin precursor, which is a member of the miR-17-92 cluster. Application of the small molecule, Targapremir-18a, to prostate cancer cells inhibited production of miR-18a from the cluster, de-repressed serine/threonine protein kinase 4 protein (STK4), and triggered apoptosis. Profiling the cellular targets of Targapremir-18a via Chemical Cross-Linking and Isolation by Pull Down (Chem-CLIP), a covalent small molecule–RNA cellular profiling approach, and other studies showed specific binding of the compound to the miR-18a precursor, revealing broadly applicable factors that govern small molecule drugging of noncoding RNAs. American Chemical Society 2017-03-06 2017-03-22 /pmc/articles/PMC5364451/ /pubmed/28386598 http://dx.doi.org/10.1021/acscentsci.7b00009 Text en Copyright © 2017 American Chemical Society This is an open access article published under an ACS AuthorChoice License (http://pubs.acs.org/page/policy/authorchoice_termsofuse.html) , which permits copying and redistribution of the article or any adaptations for non-commercial purposes.
spellingShingle Velagapudi, Sai Pradeep
Luo, Yiling
Tran, Tuan
Haniff, Hafeez S.
Nakai, Yoshio
Fallahi, Mohammad
Martinez, Gustavo J.
Childs-Disney, Jessica L.
Disney, Matthew D.
Defining RNA–Small Molecule Affinity Landscapes Enables Design of a Small Molecule Inhibitor of an Oncogenic Noncoding RNA
title Defining RNA–Small Molecule Affinity Landscapes Enables Design of a Small Molecule Inhibitor of an Oncogenic Noncoding RNA
title_full Defining RNA–Small Molecule Affinity Landscapes Enables Design of a Small Molecule Inhibitor of an Oncogenic Noncoding RNA
title_fullStr Defining RNA–Small Molecule Affinity Landscapes Enables Design of a Small Molecule Inhibitor of an Oncogenic Noncoding RNA
title_full_unstemmed Defining RNA–Small Molecule Affinity Landscapes Enables Design of a Small Molecule Inhibitor of an Oncogenic Noncoding RNA
title_short Defining RNA–Small Molecule Affinity Landscapes Enables Design of a Small Molecule Inhibitor of an Oncogenic Noncoding RNA
title_sort defining rna–small molecule affinity landscapes enables design of a small molecule inhibitor of an oncogenic noncoding rna
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5364451/
https://www.ncbi.nlm.nih.gov/pubmed/28386598
http://dx.doi.org/10.1021/acscentsci.7b00009
work_keys_str_mv AT velagapudisaipradeep definingrnasmallmoleculeaffinitylandscapesenablesdesignofasmallmoleculeinhibitorofanoncogenicnoncodingrna
AT luoyiling definingrnasmallmoleculeaffinitylandscapesenablesdesignofasmallmoleculeinhibitorofanoncogenicnoncodingrna
AT trantuan definingrnasmallmoleculeaffinitylandscapesenablesdesignofasmallmoleculeinhibitorofanoncogenicnoncodingrna
AT haniffhafeezs definingrnasmallmoleculeaffinitylandscapesenablesdesignofasmallmoleculeinhibitorofanoncogenicnoncodingrna
AT nakaiyoshio definingrnasmallmoleculeaffinitylandscapesenablesdesignofasmallmoleculeinhibitorofanoncogenicnoncodingrna
AT fallahimohammad definingrnasmallmoleculeaffinitylandscapesenablesdesignofasmallmoleculeinhibitorofanoncogenicnoncodingrna
AT martinezgustavoj definingrnasmallmoleculeaffinitylandscapesenablesdesignofasmallmoleculeinhibitorofanoncogenicnoncodingrna
AT childsdisneyjessical definingrnasmallmoleculeaffinitylandscapesenablesdesignofasmallmoleculeinhibitorofanoncogenicnoncodingrna
AT disneymatthewd definingrnasmallmoleculeaffinitylandscapesenablesdesignofasmallmoleculeinhibitorofanoncogenicnoncodingrna