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Screening for potential nuclear substrates for the plant cell death suppressor kinase Adi3 using peptide microarrays

The tomato AGC protein kinase Adi3 is a Ser/Thr kinase that functions as a negative regulator of programmed cell death through cell death suppression (CDS) activity in the nucleus. In this study, to understand the mechanism of Adi3 CDS, peptide microarrays containing random Ser- and Thr-peptide phos...

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Autores principales: Yeo, In-Cheol, Devarenne, Timothy P.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7266335/
https://www.ncbi.nlm.nih.gov/pubmed/32484825
http://dx.doi.org/10.1371/journal.pone.0234011
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author Yeo, In-Cheol
Devarenne, Timothy P.
author_facet Yeo, In-Cheol
Devarenne, Timothy P.
author_sort Yeo, In-Cheol
collection PubMed
description The tomato AGC protein kinase Adi3 is a Ser/Thr kinase that functions as a negative regulator of programmed cell death through cell death suppression (CDS) activity in the nucleus. In this study, to understand the mechanism of Adi3 CDS, peptide microarrays containing random Ser- and Thr-peptide phosphorylation substrates were used to screen for downstream phosphorylation substrates. In the microarray phosphorylation assay, Adi3 showed promiscuous kinase activity more toward Ser-peptides compared to Thr-peptides, and a preference for aromatic and cyclic amino acids on both Ser- and Thr-peptides was seen. The 63 highest phosphorylated peptide sequences from the Ser-peptide microarray were selected as queries for a BLAST search against the tomato proteome. As a result, 294 candidate nuclear Adi3 substrates were selected and categorized based on their functions. Many of these proteins were classified as DNA/RNA polymerases or regulators involved in transcription and translation events. The list of potential Adi3 substrates was narrowed to eleven and four candidates were tested for phosphorylation by Adi3. Two of these candidates, RNA polymerase II 2(nd) largest subunit (RPB2) and the pathogen defense related transcription factor Pti5, were confirmed as Adi3 phosphorylation substrates by in vitro kinase assays. Using a mutational approach two residues, Thr675 and Thr676, were identified as Adi3 phosphorylation sites on RPB2. This study provides the foundation for understanding Adi3 CDS mechanisms in the nucleus as well as other cellular functions.
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spelling pubmed-72663352020-06-10 Screening for potential nuclear substrates for the plant cell death suppressor kinase Adi3 using peptide microarrays Yeo, In-Cheol Devarenne, Timothy P. PLoS One Research Article The tomato AGC protein kinase Adi3 is a Ser/Thr kinase that functions as a negative regulator of programmed cell death through cell death suppression (CDS) activity in the nucleus. In this study, to understand the mechanism of Adi3 CDS, peptide microarrays containing random Ser- and Thr-peptide phosphorylation substrates were used to screen for downstream phosphorylation substrates. In the microarray phosphorylation assay, Adi3 showed promiscuous kinase activity more toward Ser-peptides compared to Thr-peptides, and a preference for aromatic and cyclic amino acids on both Ser- and Thr-peptides was seen. The 63 highest phosphorylated peptide sequences from the Ser-peptide microarray were selected as queries for a BLAST search against the tomato proteome. As a result, 294 candidate nuclear Adi3 substrates were selected and categorized based on their functions. Many of these proteins were classified as DNA/RNA polymerases or regulators involved in transcription and translation events. The list of potential Adi3 substrates was narrowed to eleven and four candidates were tested for phosphorylation by Adi3. Two of these candidates, RNA polymerase II 2(nd) largest subunit (RPB2) and the pathogen defense related transcription factor Pti5, were confirmed as Adi3 phosphorylation substrates by in vitro kinase assays. Using a mutational approach two residues, Thr675 and Thr676, were identified as Adi3 phosphorylation sites on RPB2. This study provides the foundation for understanding Adi3 CDS mechanisms in the nucleus as well as other cellular functions. Public Library of Science 2020-06-02 /pmc/articles/PMC7266335/ /pubmed/32484825 http://dx.doi.org/10.1371/journal.pone.0234011 Text en © 2020 Yeo, Devarenne http://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Yeo, In-Cheol
Devarenne, Timothy P.
Screening for potential nuclear substrates for the plant cell death suppressor kinase Adi3 using peptide microarrays
title Screening for potential nuclear substrates for the plant cell death suppressor kinase Adi3 using peptide microarrays
title_full Screening for potential nuclear substrates for the plant cell death suppressor kinase Adi3 using peptide microarrays
title_fullStr Screening for potential nuclear substrates for the plant cell death suppressor kinase Adi3 using peptide microarrays
title_full_unstemmed Screening for potential nuclear substrates for the plant cell death suppressor kinase Adi3 using peptide microarrays
title_short Screening for potential nuclear substrates for the plant cell death suppressor kinase Adi3 using peptide microarrays
title_sort screening for potential nuclear substrates for the plant cell death suppressor kinase adi3 using peptide microarrays
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7266335/
https://www.ncbi.nlm.nih.gov/pubmed/32484825
http://dx.doi.org/10.1371/journal.pone.0234011
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