Cargando…

Investigating the reaction and substrate preference of indole-3-acetaldehyde dehydrogenase from the plant pathogen Pseudomonas syringae PtoDC3000

Aldehyde dehydrogenases (ALDHs) catalyze the conversion of various aliphatic and aromatic aldehydes into corresponding carboxylic acids. Traditionally considered as housekeeping enzymes, new biochemical roles are being identified for members of ALDH family. Recent work showed that AldA from the plan...

Descripción completa

Detalles Bibliográficos
Autores principales: Zhang, Kaleena, Lee, Josephine S., Liu, Regina, Chan, Zita T., Dawson, Trenton J., De Togni, Elisa S., Edwards, Chris T., Eng, Isabel K., Gao, Ashley R., Goicouria, Luis A., Hall, Erin M., Hu, Kelly A., Huang, Katherine, Kizhner, Alexander, Kodama, Kelsie C., Lin, Andrew Z., Liu, Jennifer Y., Lu, Alan Y., Peng, Owen W., Ryu, Erica P., Shi, Sophia, Sorkin, Maria L., Walker, Patricia L., Wang, Grace J., Xu, Mark C., Yang, Rebecca S., Cascella, Barrie, Cruz, Wilhelm, Holland, Cynthia K., McClerkin, Sheri A., Kunkel, Barbara N., Lee, Soon Goo, Jez, Joseph M.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Portland Press Ltd. 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7745063/
https://www.ncbi.nlm.nih.gov/pubmed/33325526
http://dx.doi.org/10.1042/BSR20202959
_version_ 1783624541437689856
author Zhang, Kaleena
Lee, Josephine S.
Liu, Regina
Chan, Zita T.
Dawson, Trenton J.
De Togni, Elisa S.
Edwards, Chris T.
Eng, Isabel K.
Gao, Ashley R.
Goicouria, Luis A.
Hall, Erin M.
Hu, Kelly A.
Huang, Katherine
Kizhner, Alexander
Kodama, Kelsie C.
Lin, Andrew Z.
Liu, Jennifer Y.
Lu, Alan Y.
Peng, Owen W.
Ryu, Erica P.
Shi, Sophia
Sorkin, Maria L.
Walker, Patricia L.
Wang, Grace J.
Xu, Mark C.
Yang, Rebecca S.
Cascella, Barrie
Cruz, Wilhelm
Holland, Cynthia K.
McClerkin, Sheri A.
Kunkel, Barbara N.
Lee, Soon Goo
Jez, Joseph M.
author_facet Zhang, Kaleena
Lee, Josephine S.
Liu, Regina
Chan, Zita T.
Dawson, Trenton J.
De Togni, Elisa S.
Edwards, Chris T.
Eng, Isabel K.
Gao, Ashley R.
Goicouria, Luis A.
Hall, Erin M.
Hu, Kelly A.
Huang, Katherine
Kizhner, Alexander
Kodama, Kelsie C.
Lin, Andrew Z.
Liu, Jennifer Y.
Lu, Alan Y.
Peng, Owen W.
Ryu, Erica P.
Shi, Sophia
Sorkin, Maria L.
Walker, Patricia L.
Wang, Grace J.
Xu, Mark C.
Yang, Rebecca S.
Cascella, Barrie
Cruz, Wilhelm
Holland, Cynthia K.
McClerkin, Sheri A.
Kunkel, Barbara N.
Lee, Soon Goo
Jez, Joseph M.
author_sort Zhang, Kaleena
collection PubMed
description Aldehyde dehydrogenases (ALDHs) catalyze the conversion of various aliphatic and aromatic aldehydes into corresponding carboxylic acids. Traditionally considered as housekeeping enzymes, new biochemical roles are being identified for members of ALDH family. Recent work showed that AldA from the plant pathogen Pseudomonas syringae strain PtoDC3000 (PtoDC3000) functions as an indole-3-acetaldehyde dehydrogenase for the synthesis of indole-3-acetic acid (IAA). IAA produced by AldA allows the pathogen to suppress salicylic acid-mediated defenses in the model plant Arabidopsis thaliana. Here we present a biochemical and structural analysis of the AldA indole-3-acetaldehyde dehydrogenase from PtoDC3000. Site-directed mutants targeting the catalytic residues Cys(302) and Glu(267) resulted in a loss of enzymatic activity. The X-ray crystal structure of the catalytically inactive AldA C302A mutant in complex with IAA and NAD(+) showed the cofactor adopting a conformation that differs from the previously reported structure of AldA. These structures suggest that NAD(+) undergoes a conformational change during the AldA reaction mechanism similar to that reported for human ALDH. Site-directed mutagenesis of the IAA binding site indicates that changes in the active site surface reduces AldA activity; however, substitution of Phe(169) with a tryptophan altered the substrate selectivity of the mutant to prefer octanal. The present study highlights the inherent biochemical versatility of members of the ALDH enzyme superfamily in P. syringae.
format Online
Article
Text
id pubmed-7745063
institution National Center for Biotechnology Information
language English
publishDate 2020
publisher Portland Press Ltd.
record_format MEDLINE/PubMed
spelling pubmed-77450632020-12-29 Investigating the reaction and substrate preference of indole-3-acetaldehyde dehydrogenase from the plant pathogen Pseudomonas syringae PtoDC3000 Zhang, Kaleena Lee, Josephine S. Liu, Regina Chan, Zita T. Dawson, Trenton J. De Togni, Elisa S. Edwards, Chris T. Eng, Isabel K. Gao, Ashley R. Goicouria, Luis A. Hall, Erin M. Hu, Kelly A. Huang, Katherine Kizhner, Alexander Kodama, Kelsie C. Lin, Andrew Z. Liu, Jennifer Y. Lu, Alan Y. Peng, Owen W. Ryu, Erica P. Shi, Sophia Sorkin, Maria L. Walker, Patricia L. Wang, Grace J. Xu, Mark C. Yang, Rebecca S. Cascella, Barrie Cruz, Wilhelm Holland, Cynthia K. McClerkin, Sheri A. Kunkel, Barbara N. Lee, Soon Goo Jez, Joseph M. Biosci Rep Enzymology Aldehyde dehydrogenases (ALDHs) catalyze the conversion of various aliphatic and aromatic aldehydes into corresponding carboxylic acids. Traditionally considered as housekeeping enzymes, new biochemical roles are being identified for members of ALDH family. Recent work showed that AldA from the plant pathogen Pseudomonas syringae strain PtoDC3000 (PtoDC3000) functions as an indole-3-acetaldehyde dehydrogenase for the synthesis of indole-3-acetic acid (IAA). IAA produced by AldA allows the pathogen to suppress salicylic acid-mediated defenses in the model plant Arabidopsis thaliana. Here we present a biochemical and structural analysis of the AldA indole-3-acetaldehyde dehydrogenase from PtoDC3000. Site-directed mutants targeting the catalytic residues Cys(302) and Glu(267) resulted in a loss of enzymatic activity. The X-ray crystal structure of the catalytically inactive AldA C302A mutant in complex with IAA and NAD(+) showed the cofactor adopting a conformation that differs from the previously reported structure of AldA. These structures suggest that NAD(+) undergoes a conformational change during the AldA reaction mechanism similar to that reported for human ALDH. Site-directed mutagenesis of the IAA binding site indicates that changes in the active site surface reduces AldA activity; however, substitution of Phe(169) with a tryptophan altered the substrate selectivity of the mutant to prefer octanal. The present study highlights the inherent biochemical versatility of members of the ALDH enzyme superfamily in P. syringae. Portland Press Ltd. 2020-12-16 /pmc/articles/PMC7745063/ /pubmed/33325526 http://dx.doi.org/10.1042/BSR20202959 Text en © 2020 The Author(s). https://creativecommons.org/licenses/by/4.0/ This is an open access article published by Portland Press Limited on behalf of the Biochemical Society and distributed under the .
spellingShingle Enzymology
Zhang, Kaleena
Lee, Josephine S.
Liu, Regina
Chan, Zita T.
Dawson, Trenton J.
De Togni, Elisa S.
Edwards, Chris T.
Eng, Isabel K.
Gao, Ashley R.
Goicouria, Luis A.
Hall, Erin M.
Hu, Kelly A.
Huang, Katherine
Kizhner, Alexander
Kodama, Kelsie C.
Lin, Andrew Z.
Liu, Jennifer Y.
Lu, Alan Y.
Peng, Owen W.
Ryu, Erica P.
Shi, Sophia
Sorkin, Maria L.
Walker, Patricia L.
Wang, Grace J.
Xu, Mark C.
Yang, Rebecca S.
Cascella, Barrie
Cruz, Wilhelm
Holland, Cynthia K.
McClerkin, Sheri A.
Kunkel, Barbara N.
Lee, Soon Goo
Jez, Joseph M.
Investigating the reaction and substrate preference of indole-3-acetaldehyde dehydrogenase from the plant pathogen Pseudomonas syringae PtoDC3000
title Investigating the reaction and substrate preference of indole-3-acetaldehyde dehydrogenase from the plant pathogen Pseudomonas syringae PtoDC3000
title_full Investigating the reaction and substrate preference of indole-3-acetaldehyde dehydrogenase from the plant pathogen Pseudomonas syringae PtoDC3000
title_fullStr Investigating the reaction and substrate preference of indole-3-acetaldehyde dehydrogenase from the plant pathogen Pseudomonas syringae PtoDC3000
title_full_unstemmed Investigating the reaction and substrate preference of indole-3-acetaldehyde dehydrogenase from the plant pathogen Pseudomonas syringae PtoDC3000
title_short Investigating the reaction and substrate preference of indole-3-acetaldehyde dehydrogenase from the plant pathogen Pseudomonas syringae PtoDC3000
title_sort investigating the reaction and substrate preference of indole-3-acetaldehyde dehydrogenase from the plant pathogen pseudomonas syringae ptodc3000
topic Enzymology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7745063/
https://www.ncbi.nlm.nih.gov/pubmed/33325526
http://dx.doi.org/10.1042/BSR20202959
work_keys_str_mv AT zhangkaleena investigatingthereactionandsubstratepreferenceofindole3acetaldehydedehydrogenasefromtheplantpathogenpseudomonassyringaeptodc3000
AT leejosephines investigatingthereactionandsubstratepreferenceofindole3acetaldehydedehydrogenasefromtheplantpathogenpseudomonassyringaeptodc3000
AT liuregina investigatingthereactionandsubstratepreferenceofindole3acetaldehydedehydrogenasefromtheplantpathogenpseudomonassyringaeptodc3000
AT chanzitat investigatingthereactionandsubstratepreferenceofindole3acetaldehydedehydrogenasefromtheplantpathogenpseudomonassyringaeptodc3000
AT dawsontrentonj investigatingthereactionandsubstratepreferenceofindole3acetaldehydedehydrogenasefromtheplantpathogenpseudomonassyringaeptodc3000
AT detognielisas investigatingthereactionandsubstratepreferenceofindole3acetaldehydedehydrogenasefromtheplantpathogenpseudomonassyringaeptodc3000
AT edwardschrist investigatingthereactionandsubstratepreferenceofindole3acetaldehydedehydrogenasefromtheplantpathogenpseudomonassyringaeptodc3000
AT engisabelk investigatingthereactionandsubstratepreferenceofindole3acetaldehydedehydrogenasefromtheplantpathogenpseudomonassyringaeptodc3000
AT gaoashleyr investigatingthereactionandsubstratepreferenceofindole3acetaldehydedehydrogenasefromtheplantpathogenpseudomonassyringaeptodc3000
AT goicourialuisa investigatingthereactionandsubstratepreferenceofindole3acetaldehydedehydrogenasefromtheplantpathogenpseudomonassyringaeptodc3000
AT hallerinm investigatingthereactionandsubstratepreferenceofindole3acetaldehydedehydrogenasefromtheplantpathogenpseudomonassyringaeptodc3000
AT hukellya investigatingthereactionandsubstratepreferenceofindole3acetaldehydedehydrogenasefromtheplantpathogenpseudomonassyringaeptodc3000
AT huangkatherine investigatingthereactionandsubstratepreferenceofindole3acetaldehydedehydrogenasefromtheplantpathogenpseudomonassyringaeptodc3000
AT kizhneralexander investigatingthereactionandsubstratepreferenceofindole3acetaldehydedehydrogenasefromtheplantpathogenpseudomonassyringaeptodc3000
AT kodamakelsiec investigatingthereactionandsubstratepreferenceofindole3acetaldehydedehydrogenasefromtheplantpathogenpseudomonassyringaeptodc3000
AT linandrewz investigatingthereactionandsubstratepreferenceofindole3acetaldehydedehydrogenasefromtheplantpathogenpseudomonassyringaeptodc3000
AT liujennifery investigatingthereactionandsubstratepreferenceofindole3acetaldehydedehydrogenasefromtheplantpathogenpseudomonassyringaeptodc3000
AT lualany investigatingthereactionandsubstratepreferenceofindole3acetaldehydedehydrogenasefromtheplantpathogenpseudomonassyringaeptodc3000
AT pengowenw investigatingthereactionandsubstratepreferenceofindole3acetaldehydedehydrogenasefromtheplantpathogenpseudomonassyringaeptodc3000
AT ryuericap investigatingthereactionandsubstratepreferenceofindole3acetaldehydedehydrogenasefromtheplantpathogenpseudomonassyringaeptodc3000
AT shisophia investigatingthereactionandsubstratepreferenceofindole3acetaldehydedehydrogenasefromtheplantpathogenpseudomonassyringaeptodc3000
AT sorkinmarial investigatingthereactionandsubstratepreferenceofindole3acetaldehydedehydrogenasefromtheplantpathogenpseudomonassyringaeptodc3000
AT walkerpatricial investigatingthereactionandsubstratepreferenceofindole3acetaldehydedehydrogenasefromtheplantpathogenpseudomonassyringaeptodc3000
AT wanggracej investigatingthereactionandsubstratepreferenceofindole3acetaldehydedehydrogenasefromtheplantpathogenpseudomonassyringaeptodc3000
AT xumarkc investigatingthereactionandsubstratepreferenceofindole3acetaldehydedehydrogenasefromtheplantpathogenpseudomonassyringaeptodc3000
AT yangrebeccas investigatingthereactionandsubstratepreferenceofindole3acetaldehydedehydrogenasefromtheplantpathogenpseudomonassyringaeptodc3000
AT cascellabarrie investigatingthereactionandsubstratepreferenceofindole3acetaldehydedehydrogenasefromtheplantpathogenpseudomonassyringaeptodc3000
AT cruzwilhelm investigatingthereactionandsubstratepreferenceofindole3acetaldehydedehydrogenasefromtheplantpathogenpseudomonassyringaeptodc3000
AT hollandcynthiak investigatingthereactionandsubstratepreferenceofindole3acetaldehydedehydrogenasefromtheplantpathogenpseudomonassyringaeptodc3000
AT mcclerkinsheria investigatingthereactionandsubstratepreferenceofindole3acetaldehydedehydrogenasefromtheplantpathogenpseudomonassyringaeptodc3000
AT kunkelbarbaran investigatingthereactionandsubstratepreferenceofindole3acetaldehydedehydrogenasefromtheplantpathogenpseudomonassyringaeptodc3000
AT leesoongoo investigatingthereactionandsubstratepreferenceofindole3acetaldehydedehydrogenasefromtheplantpathogenpseudomonassyringaeptodc3000
AT jezjosephm investigatingthereactionandsubstratepreferenceofindole3acetaldehydedehydrogenasefromtheplantpathogenpseudomonassyringaeptodc3000