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The structure of NAD(+) consuming protein Acinetobacter baumannii TIR domain shows unique kinetics and conformations

Toll-like and interleukin-1/18 receptor/resistance (TIR) domain–containing proteins function as important signaling and immune regulatory molecules. TIR domain–containing proteins identified in eukaryotic and prokaryotic species also exhibit NAD+ hydrolase activity in select bacteria, plants, and ma...

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Autores principales: Klontz, Erik, Obi, Juliet O., Wang, Yajing, Glendening, Gabrielle, Carr, Jahid, Tsibouris, Constantine, Buddula, Sahthi, Nallar, Shreeram, Soares, Alexei S., Beckett, Dorothy, Redzic, Jasmina S., Eisenmesser, Elan, Palm, Cheyenne, Schmidt, Katrina, Scudder, Alexis H., Obiorah, Trinity, Essuman, Kow, Milbrandt, Jeffrey, Diantonio, Aaron, Ray, Krishanu, Snyder, Michelle L.D., Deredge, Daniel, Snyder, Greg A.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society for Biochemistry and Molecular Biology 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10641520/
https://www.ncbi.nlm.nih.gov/pubmed/37758001
http://dx.doi.org/10.1016/j.jbc.2023.105290
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author Klontz, Erik
Obi, Juliet O.
Wang, Yajing
Glendening, Gabrielle
Carr, Jahid
Tsibouris, Constantine
Buddula, Sahthi
Nallar, Shreeram
Soares, Alexei S.
Beckett, Dorothy
Redzic, Jasmina S.
Eisenmesser, Elan
Palm, Cheyenne
Schmidt, Katrina
Scudder, Alexis H.
Obiorah, Trinity
Essuman, Kow
Milbrandt, Jeffrey
Diantonio, Aaron
Ray, Krishanu
Snyder, Michelle L.D.
Deredge, Daniel
Snyder, Greg A.
author_facet Klontz, Erik
Obi, Juliet O.
Wang, Yajing
Glendening, Gabrielle
Carr, Jahid
Tsibouris, Constantine
Buddula, Sahthi
Nallar, Shreeram
Soares, Alexei S.
Beckett, Dorothy
Redzic, Jasmina S.
Eisenmesser, Elan
Palm, Cheyenne
Schmidt, Katrina
Scudder, Alexis H.
Obiorah, Trinity
Essuman, Kow
Milbrandt, Jeffrey
Diantonio, Aaron
Ray, Krishanu
Snyder, Michelle L.D.
Deredge, Daniel
Snyder, Greg A.
author_sort Klontz, Erik
collection PubMed
description Toll-like and interleukin-1/18 receptor/resistance (TIR) domain–containing proteins function as important signaling and immune regulatory molecules. TIR domain–containing proteins identified in eukaryotic and prokaryotic species also exhibit NAD+ hydrolase activity in select bacteria, plants, and mammalian cells. We report the crystal structure of the Acinetobacter baumannii TIR domain protein (AbTir-TIR) with confirmed NAD(+) hydrolysis and map the conformational effects of its interaction with NAD(+) using hydrogen-deuterium exchange-mass spectrometry. NAD(+) results in mild decreases in deuterium uptake at the dimeric interface. In addition, AbTir-TIR exhibits EX1 kinetics indicative of large cooperative conformational changes, which are slowed down upon substrate binding. Additionally, we have developed label-free imaging using the minimally invasive spectroscopic method 2-photon excitation with fluorescence lifetime imaging, which shows differences in bacteria expressing native and mutant NAD+ hydrolase-inactivated AbTir-TIR(E208A) protein. Our observations are consistent with substrate-induced conformational changes reported in other TIR model systems with NAD+ hydrolase activity. These studies provide further insight into bacterial TIR protein mechanisms and their varying roles in biology.
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spelling pubmed-106415202023-11-14 The structure of NAD(+) consuming protein Acinetobacter baumannii TIR domain shows unique kinetics and conformations Klontz, Erik Obi, Juliet O. Wang, Yajing Glendening, Gabrielle Carr, Jahid Tsibouris, Constantine Buddula, Sahthi Nallar, Shreeram Soares, Alexei S. Beckett, Dorothy Redzic, Jasmina S. Eisenmesser, Elan Palm, Cheyenne Schmidt, Katrina Scudder, Alexis H. Obiorah, Trinity Essuman, Kow Milbrandt, Jeffrey Diantonio, Aaron Ray, Krishanu Snyder, Michelle L.D. Deredge, Daniel Snyder, Greg A. J Biol Chem Research Article Toll-like and interleukin-1/18 receptor/resistance (TIR) domain–containing proteins function as important signaling and immune regulatory molecules. TIR domain–containing proteins identified in eukaryotic and prokaryotic species also exhibit NAD+ hydrolase activity in select bacteria, plants, and mammalian cells. We report the crystal structure of the Acinetobacter baumannii TIR domain protein (AbTir-TIR) with confirmed NAD(+) hydrolysis and map the conformational effects of its interaction with NAD(+) using hydrogen-deuterium exchange-mass spectrometry. NAD(+) results in mild decreases in deuterium uptake at the dimeric interface. In addition, AbTir-TIR exhibits EX1 kinetics indicative of large cooperative conformational changes, which are slowed down upon substrate binding. Additionally, we have developed label-free imaging using the minimally invasive spectroscopic method 2-photon excitation with fluorescence lifetime imaging, which shows differences in bacteria expressing native and mutant NAD+ hydrolase-inactivated AbTir-TIR(E208A) protein. Our observations are consistent with substrate-induced conformational changes reported in other TIR model systems with NAD+ hydrolase activity. These studies provide further insight into bacterial TIR protein mechanisms and their varying roles in biology. American Society for Biochemistry and Molecular Biology 2023-09-25 /pmc/articles/PMC10641520/ /pubmed/37758001 http://dx.doi.org/10.1016/j.jbc.2023.105290 Text en © 2023 The Authors https://creativecommons.org/licenses/by-nc-nd/4.0/This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Research Article
Klontz, Erik
Obi, Juliet O.
Wang, Yajing
Glendening, Gabrielle
Carr, Jahid
Tsibouris, Constantine
Buddula, Sahthi
Nallar, Shreeram
Soares, Alexei S.
Beckett, Dorothy
Redzic, Jasmina S.
Eisenmesser, Elan
Palm, Cheyenne
Schmidt, Katrina
Scudder, Alexis H.
Obiorah, Trinity
Essuman, Kow
Milbrandt, Jeffrey
Diantonio, Aaron
Ray, Krishanu
Snyder, Michelle L.D.
Deredge, Daniel
Snyder, Greg A.
The structure of NAD(+) consuming protein Acinetobacter baumannii TIR domain shows unique kinetics and conformations
title The structure of NAD(+) consuming protein Acinetobacter baumannii TIR domain shows unique kinetics and conformations
title_full The structure of NAD(+) consuming protein Acinetobacter baumannii TIR domain shows unique kinetics and conformations
title_fullStr The structure of NAD(+) consuming protein Acinetobacter baumannii TIR domain shows unique kinetics and conformations
title_full_unstemmed The structure of NAD(+) consuming protein Acinetobacter baumannii TIR domain shows unique kinetics and conformations
title_short The structure of NAD(+) consuming protein Acinetobacter baumannii TIR domain shows unique kinetics and conformations
title_sort structure of nad(+) consuming protein acinetobacter baumannii tir domain shows unique kinetics and conformations
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10641520/
https://www.ncbi.nlm.nih.gov/pubmed/37758001
http://dx.doi.org/10.1016/j.jbc.2023.105290
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