Cargando…

A phenolic small molecule inhibitor of RNase L prevents cell death from ADAR1 deficiency

The oligoadenylate synthetase (OAS)–RNase L system is an IFN-inducible antiviral pathway activated by viral infection. Viral double-stranded (ds) RNA activates OAS isoforms that synthesize the second messenger 2-5A, which binds and activates the pseudokinase-endoribonuclease RNase L. In cells, OAS a...

Descripción completa

Detalles Bibliográficos
Autores principales: Daou, Salima, Talukdar, Manisha, Tang, Jinle, Dong, Beihua, Banerjee, Shuvojit, Li, Yize, Duffy, Nicole M., Ogunjimi, Abiodun A., Gaughan, Christina, Jha, Babal K., Gish, Gerald, Tavernier, Nicolas, Mao, Daniel, Weiss, Susan R., Huang, Hao, Silverman, Robert H., Sicheri, Frank
Formato: Online Artículo Texto
Lenguaje:English
Publicado: National Academy of Sciences 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7547215/
https://www.ncbi.nlm.nih.gov/pubmed/32958664
http://dx.doi.org/10.1073/pnas.2006883117
_version_ 1783592380604088320
author Daou, Salima
Talukdar, Manisha
Tang, Jinle
Dong, Beihua
Banerjee, Shuvojit
Li, Yize
Duffy, Nicole M.
Ogunjimi, Abiodun A.
Gaughan, Christina
Jha, Babal K.
Gish, Gerald
Tavernier, Nicolas
Mao, Daniel
Weiss, Susan R.
Huang, Hao
Silverman, Robert H.
Sicheri, Frank
author_facet Daou, Salima
Talukdar, Manisha
Tang, Jinle
Dong, Beihua
Banerjee, Shuvojit
Li, Yize
Duffy, Nicole M.
Ogunjimi, Abiodun A.
Gaughan, Christina
Jha, Babal K.
Gish, Gerald
Tavernier, Nicolas
Mao, Daniel
Weiss, Susan R.
Huang, Hao
Silverman, Robert H.
Sicheri, Frank
author_sort Daou, Salima
collection PubMed
description The oligoadenylate synthetase (OAS)–RNase L system is an IFN-inducible antiviral pathway activated by viral infection. Viral double-stranded (ds) RNA activates OAS isoforms that synthesize the second messenger 2-5A, which binds and activates the pseudokinase-endoribonuclease RNase L. In cells, OAS activation is tamped down by ADAR1, an adenosine deaminase that destabilizes dsRNA. Mutation of ADAR1 is one cause of Aicardi-Goutières syndrome (AGS), an interferonopathy in children. ADAR1 deficiency in human cells can lead to RNase L activation and subsequent cell death. To evaluate RNase L as a possible therapeutic target for AGS, we sought to identify small-molecule inhibitors of RNase L. A 500-compound library of protein kinase inhibitors was screened for modulators of RNase L activity in vitro. We identified ellagic acid (EA) as a hit with 10-fold higher selectivity against RNase L compared with its nearest paralog, IRE1. SAR analysis identified valoneic acid dilactone (VAL) as a superior inhibitor of RNase L, with 100-fold selectivity over IRE1. Mechanism-of-action analysis indicated that EA and VAL do not bind to the pseudokinase domain of RNase L despite acting as ATP competitive inhibitors of the protein kinase CK2. VAL is nontoxic and functional in cells, although with a 1,000-fold decrease in potency, as measured by RNA cleavage activity in response to treatment with dsRNA activator or by rescue of cell lethality resulting from self dsRNA induced by ADAR1 deficiency. These studies lay the foundation for understanding novel modes of regulating RNase L function using small-molecule inhibitors and avenues of therapeutic potential.
format Online
Article
Text
id pubmed-7547215
institution National Center for Biotechnology Information
language English
publishDate 2020
publisher National Academy of Sciences
record_format MEDLINE/PubMed
spelling pubmed-75472152020-10-22 A phenolic small molecule inhibitor of RNase L prevents cell death from ADAR1 deficiency Daou, Salima Talukdar, Manisha Tang, Jinle Dong, Beihua Banerjee, Shuvojit Li, Yize Duffy, Nicole M. Ogunjimi, Abiodun A. Gaughan, Christina Jha, Babal K. Gish, Gerald Tavernier, Nicolas Mao, Daniel Weiss, Susan R. Huang, Hao Silverman, Robert H. Sicheri, Frank Proc Natl Acad Sci U S A Biological Sciences The oligoadenylate synthetase (OAS)–RNase L system is an IFN-inducible antiviral pathway activated by viral infection. Viral double-stranded (ds) RNA activates OAS isoforms that synthesize the second messenger 2-5A, which binds and activates the pseudokinase-endoribonuclease RNase L. In cells, OAS activation is tamped down by ADAR1, an adenosine deaminase that destabilizes dsRNA. Mutation of ADAR1 is one cause of Aicardi-Goutières syndrome (AGS), an interferonopathy in children. ADAR1 deficiency in human cells can lead to RNase L activation and subsequent cell death. To evaluate RNase L as a possible therapeutic target for AGS, we sought to identify small-molecule inhibitors of RNase L. A 500-compound library of protein kinase inhibitors was screened for modulators of RNase L activity in vitro. We identified ellagic acid (EA) as a hit with 10-fold higher selectivity against RNase L compared with its nearest paralog, IRE1. SAR analysis identified valoneic acid dilactone (VAL) as a superior inhibitor of RNase L, with 100-fold selectivity over IRE1. Mechanism-of-action analysis indicated that EA and VAL do not bind to the pseudokinase domain of RNase L despite acting as ATP competitive inhibitors of the protein kinase CK2. VAL is nontoxic and functional in cells, although with a 1,000-fold decrease in potency, as measured by RNA cleavage activity in response to treatment with dsRNA activator or by rescue of cell lethality resulting from self dsRNA induced by ADAR1 deficiency. These studies lay the foundation for understanding novel modes of regulating RNase L function using small-molecule inhibitors and avenues of therapeutic potential. National Academy of Sciences 2020-10-06 2020-09-21 /pmc/articles/PMC7547215/ /pubmed/32958664 http://dx.doi.org/10.1073/pnas.2006883117 Text en Copyright © 2020 the Author(s). Published by PNAS. https://creativecommons.org/licenses/by-nc-nd/4.0/ https://creativecommons.org/licenses/by-nc-nd/4.0/This open access article is distributed under Creative Commons Attribution-NonCommercial-NoDerivatives License 4.0 (CC BY-NC-ND) (https://creativecommons.org/licenses/by-nc-nd/4.0/) .
spellingShingle Biological Sciences
Daou, Salima
Talukdar, Manisha
Tang, Jinle
Dong, Beihua
Banerjee, Shuvojit
Li, Yize
Duffy, Nicole M.
Ogunjimi, Abiodun A.
Gaughan, Christina
Jha, Babal K.
Gish, Gerald
Tavernier, Nicolas
Mao, Daniel
Weiss, Susan R.
Huang, Hao
Silverman, Robert H.
Sicheri, Frank
A phenolic small molecule inhibitor of RNase L prevents cell death from ADAR1 deficiency
title A phenolic small molecule inhibitor of RNase L prevents cell death from ADAR1 deficiency
title_full A phenolic small molecule inhibitor of RNase L prevents cell death from ADAR1 deficiency
title_fullStr A phenolic small molecule inhibitor of RNase L prevents cell death from ADAR1 deficiency
title_full_unstemmed A phenolic small molecule inhibitor of RNase L prevents cell death from ADAR1 deficiency
title_short A phenolic small molecule inhibitor of RNase L prevents cell death from ADAR1 deficiency
title_sort phenolic small molecule inhibitor of rnase l prevents cell death from adar1 deficiency
topic Biological Sciences
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7547215/
https://www.ncbi.nlm.nih.gov/pubmed/32958664
http://dx.doi.org/10.1073/pnas.2006883117
work_keys_str_mv AT daousalima aphenolicsmallmoleculeinhibitorofrnaselpreventscelldeathfromadar1deficiency
AT talukdarmanisha aphenolicsmallmoleculeinhibitorofrnaselpreventscelldeathfromadar1deficiency
AT tangjinle aphenolicsmallmoleculeinhibitorofrnaselpreventscelldeathfromadar1deficiency
AT dongbeihua aphenolicsmallmoleculeinhibitorofrnaselpreventscelldeathfromadar1deficiency
AT banerjeeshuvojit aphenolicsmallmoleculeinhibitorofrnaselpreventscelldeathfromadar1deficiency
AT liyize aphenolicsmallmoleculeinhibitorofrnaselpreventscelldeathfromadar1deficiency
AT duffynicolem aphenolicsmallmoleculeinhibitorofrnaselpreventscelldeathfromadar1deficiency
AT ogunjimiabioduna aphenolicsmallmoleculeinhibitorofrnaselpreventscelldeathfromadar1deficiency
AT gaughanchristina aphenolicsmallmoleculeinhibitorofrnaselpreventscelldeathfromadar1deficiency
AT jhababalk aphenolicsmallmoleculeinhibitorofrnaselpreventscelldeathfromadar1deficiency
AT gishgerald aphenolicsmallmoleculeinhibitorofrnaselpreventscelldeathfromadar1deficiency
AT taverniernicolas aphenolicsmallmoleculeinhibitorofrnaselpreventscelldeathfromadar1deficiency
AT maodaniel aphenolicsmallmoleculeinhibitorofrnaselpreventscelldeathfromadar1deficiency
AT weisssusanr aphenolicsmallmoleculeinhibitorofrnaselpreventscelldeathfromadar1deficiency
AT huanghao aphenolicsmallmoleculeinhibitorofrnaselpreventscelldeathfromadar1deficiency
AT silvermanroberth aphenolicsmallmoleculeinhibitorofrnaselpreventscelldeathfromadar1deficiency
AT sicherifrank aphenolicsmallmoleculeinhibitorofrnaselpreventscelldeathfromadar1deficiency
AT daousalima phenolicsmallmoleculeinhibitorofrnaselpreventscelldeathfromadar1deficiency
AT talukdarmanisha phenolicsmallmoleculeinhibitorofrnaselpreventscelldeathfromadar1deficiency
AT tangjinle phenolicsmallmoleculeinhibitorofrnaselpreventscelldeathfromadar1deficiency
AT dongbeihua phenolicsmallmoleculeinhibitorofrnaselpreventscelldeathfromadar1deficiency
AT banerjeeshuvojit phenolicsmallmoleculeinhibitorofrnaselpreventscelldeathfromadar1deficiency
AT liyize phenolicsmallmoleculeinhibitorofrnaselpreventscelldeathfromadar1deficiency
AT duffynicolem phenolicsmallmoleculeinhibitorofrnaselpreventscelldeathfromadar1deficiency
AT ogunjimiabioduna phenolicsmallmoleculeinhibitorofrnaselpreventscelldeathfromadar1deficiency
AT gaughanchristina phenolicsmallmoleculeinhibitorofrnaselpreventscelldeathfromadar1deficiency
AT jhababalk phenolicsmallmoleculeinhibitorofrnaselpreventscelldeathfromadar1deficiency
AT gishgerald phenolicsmallmoleculeinhibitorofrnaselpreventscelldeathfromadar1deficiency
AT taverniernicolas phenolicsmallmoleculeinhibitorofrnaselpreventscelldeathfromadar1deficiency
AT maodaniel phenolicsmallmoleculeinhibitorofrnaselpreventscelldeathfromadar1deficiency
AT weisssusanr phenolicsmallmoleculeinhibitorofrnaselpreventscelldeathfromadar1deficiency
AT huanghao phenolicsmallmoleculeinhibitorofrnaselpreventscelldeathfromadar1deficiency
AT silvermanroberth phenolicsmallmoleculeinhibitorofrnaselpreventscelldeathfromadar1deficiency
AT sicherifrank phenolicsmallmoleculeinhibitorofrnaselpreventscelldeathfromadar1deficiency