Cargando…

The Vibrio cholerae SpeG Spermidine/Spermine N-Acetyltransferase Allosteric Loop and β6-β7 Structural Elements Are Critical for Kinetic Activity

Polyamines regulate many important biological processes including gene expression, intracellular signaling, and biofilm formation. Their intracellular concentrations are tightly regulated by polyamine transport systems and biosynthetic and catabolic pathways. Spermidine/spermine N-acetyltransferases...

Descripción completa

Detalles Bibliográficos
Autores principales: Le, Van Thi Bich, Tsimbalyuk, Sofiya, Lim, Ee Qi, Solis, Allan, Gawat, Darwin, Boeck, Paloma, Lim, Ee Qing, Renolo, Rosselini, Forwood, Jade K., Kuhn, Misty L.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8076852/
https://www.ncbi.nlm.nih.gov/pubmed/33928120
http://dx.doi.org/10.3389/fmolb.2021.645768
_version_ 1783684772284858368
author Le, Van Thi Bich
Tsimbalyuk, Sofiya
Lim, Ee Qi
Solis, Allan
Gawat, Darwin
Boeck, Paloma
Lim, Ee Qing
Renolo, Rosselini
Forwood, Jade K.
Kuhn, Misty L.
author_facet Le, Van Thi Bich
Tsimbalyuk, Sofiya
Lim, Ee Qi
Solis, Allan
Gawat, Darwin
Boeck, Paloma
Lim, Ee Qing
Renolo, Rosselini
Forwood, Jade K.
Kuhn, Misty L.
author_sort Le, Van Thi Bich
collection PubMed
description Polyamines regulate many important biological processes including gene expression, intracellular signaling, and biofilm formation. Their intracellular concentrations are tightly regulated by polyamine transport systems and biosynthetic and catabolic pathways. Spermidine/spermine N-acetyltransferases (SSATs) are catabolic enzymes that acetylate polyamines and are critical for maintaining intracellular polyamine homeostasis. These enzymes belong to the Gcn5-related N-acetyltransferase (GNAT) superfamily and adopt a highly conserved fold found across all kingdoms of life. SpeG is an SSAT protein found in a variety of bacteria, including the human pathogen Vibrio cholerae. This protein adopts a dodecameric structure and contains an allosteric site, making it unique compared to other SSATs. Currently, we have a limited understanding of the critical structural components of this protein that are required for its allosteric behavior. Therefore, we explored the importance of two key regions of the SpeG protein on its kinetic activity. To achieve this, we created various constructs of the V. cholerae SpeG protein, including point mutations, a deletion, and chimeras with residues from the structurally distinct and non-allosteric human SSAT protein. We measured enzyme kinetic activity toward spermine for ten constructs and crystallized six of them. Ultimately, we identified specific portions of the allosteric loop and the β6-β7 structural elements that were critical for enzyme kinetic activity. These results provide a framework for further study of the structure/function relationship of SpeG enzymes from other organisms and clues toward the structural evolution of members of the GNAT family across domains of life.
format Online
Article
Text
id pubmed-8076852
institution National Center for Biotechnology Information
language English
publishDate 2021
publisher Frontiers Media S.A.
record_format MEDLINE/PubMed
spelling pubmed-80768522021-04-28 The Vibrio cholerae SpeG Spermidine/Spermine N-Acetyltransferase Allosteric Loop and β6-β7 Structural Elements Are Critical for Kinetic Activity Le, Van Thi Bich Tsimbalyuk, Sofiya Lim, Ee Qi Solis, Allan Gawat, Darwin Boeck, Paloma Lim, Ee Qing Renolo, Rosselini Forwood, Jade K. Kuhn, Misty L. Front Mol Biosci Molecular Biosciences Polyamines regulate many important biological processes including gene expression, intracellular signaling, and biofilm formation. Their intracellular concentrations are tightly regulated by polyamine transport systems and biosynthetic and catabolic pathways. Spermidine/spermine N-acetyltransferases (SSATs) are catabolic enzymes that acetylate polyamines and are critical for maintaining intracellular polyamine homeostasis. These enzymes belong to the Gcn5-related N-acetyltransferase (GNAT) superfamily and adopt a highly conserved fold found across all kingdoms of life. SpeG is an SSAT protein found in a variety of bacteria, including the human pathogen Vibrio cholerae. This protein adopts a dodecameric structure and contains an allosteric site, making it unique compared to other SSATs. Currently, we have a limited understanding of the critical structural components of this protein that are required for its allosteric behavior. Therefore, we explored the importance of two key regions of the SpeG protein on its kinetic activity. To achieve this, we created various constructs of the V. cholerae SpeG protein, including point mutations, a deletion, and chimeras with residues from the structurally distinct and non-allosteric human SSAT protein. We measured enzyme kinetic activity toward spermine for ten constructs and crystallized six of them. Ultimately, we identified specific portions of the allosteric loop and the β6-β7 structural elements that were critical for enzyme kinetic activity. These results provide a framework for further study of the structure/function relationship of SpeG enzymes from other organisms and clues toward the structural evolution of members of the GNAT family across domains of life. Frontiers Media S.A. 2021-04-13 /pmc/articles/PMC8076852/ /pubmed/33928120 http://dx.doi.org/10.3389/fmolb.2021.645768 Text en Copyright © 2021 Le, Tsimbalyuk, Lim, Solis, Gawat, Boeck, Lim, Renolo, Forwood and Kuhn. https://creativecommons.org/licenses/by/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Molecular Biosciences
Le, Van Thi Bich
Tsimbalyuk, Sofiya
Lim, Ee Qi
Solis, Allan
Gawat, Darwin
Boeck, Paloma
Lim, Ee Qing
Renolo, Rosselini
Forwood, Jade K.
Kuhn, Misty L.
The Vibrio cholerae SpeG Spermidine/Spermine N-Acetyltransferase Allosteric Loop and β6-β7 Structural Elements Are Critical for Kinetic Activity
title The Vibrio cholerae SpeG Spermidine/Spermine N-Acetyltransferase Allosteric Loop and β6-β7 Structural Elements Are Critical for Kinetic Activity
title_full The Vibrio cholerae SpeG Spermidine/Spermine N-Acetyltransferase Allosteric Loop and β6-β7 Structural Elements Are Critical for Kinetic Activity
title_fullStr The Vibrio cholerae SpeG Spermidine/Spermine N-Acetyltransferase Allosteric Loop and β6-β7 Structural Elements Are Critical for Kinetic Activity
title_full_unstemmed The Vibrio cholerae SpeG Spermidine/Spermine N-Acetyltransferase Allosteric Loop and β6-β7 Structural Elements Are Critical for Kinetic Activity
title_short The Vibrio cholerae SpeG Spermidine/Spermine N-Acetyltransferase Allosteric Loop and β6-β7 Structural Elements Are Critical for Kinetic Activity
title_sort vibrio cholerae speg spermidine/spermine n-acetyltransferase allosteric loop and β6-β7 structural elements are critical for kinetic activity
topic Molecular Biosciences
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8076852/
https://www.ncbi.nlm.nih.gov/pubmed/33928120
http://dx.doi.org/10.3389/fmolb.2021.645768
work_keys_str_mv AT levanthibich thevibriocholeraespegspermidinesperminenacetyltransferaseallostericloopandb6b7structuralelementsarecriticalforkineticactivity
AT tsimbalyuksofiya thevibriocholeraespegspermidinesperminenacetyltransferaseallostericloopandb6b7structuralelementsarecriticalforkineticactivity
AT limeeqi thevibriocholeraespegspermidinesperminenacetyltransferaseallostericloopandb6b7structuralelementsarecriticalforkineticactivity
AT solisallan thevibriocholeraespegspermidinesperminenacetyltransferaseallostericloopandb6b7structuralelementsarecriticalforkineticactivity
AT gawatdarwin thevibriocholeraespegspermidinesperminenacetyltransferaseallostericloopandb6b7structuralelementsarecriticalforkineticactivity
AT boeckpaloma thevibriocholeraespegspermidinesperminenacetyltransferaseallostericloopandb6b7structuralelementsarecriticalforkineticactivity
AT limeeqing thevibriocholeraespegspermidinesperminenacetyltransferaseallostericloopandb6b7structuralelementsarecriticalforkineticactivity
AT renolorosselini thevibriocholeraespegspermidinesperminenacetyltransferaseallostericloopandb6b7structuralelementsarecriticalforkineticactivity
AT forwoodjadek thevibriocholeraespegspermidinesperminenacetyltransferaseallostericloopandb6b7structuralelementsarecriticalforkineticactivity
AT kuhnmistyl thevibriocholeraespegspermidinesperminenacetyltransferaseallostericloopandb6b7structuralelementsarecriticalforkineticactivity
AT levanthibich vibriocholeraespegspermidinesperminenacetyltransferaseallostericloopandb6b7structuralelementsarecriticalforkineticactivity
AT tsimbalyuksofiya vibriocholeraespegspermidinesperminenacetyltransferaseallostericloopandb6b7structuralelementsarecriticalforkineticactivity
AT limeeqi vibriocholeraespegspermidinesperminenacetyltransferaseallostericloopandb6b7structuralelementsarecriticalforkineticactivity
AT solisallan vibriocholeraespegspermidinesperminenacetyltransferaseallostericloopandb6b7structuralelementsarecriticalforkineticactivity
AT gawatdarwin vibriocholeraespegspermidinesperminenacetyltransferaseallostericloopandb6b7structuralelementsarecriticalforkineticactivity
AT boeckpaloma vibriocholeraespegspermidinesperminenacetyltransferaseallostericloopandb6b7structuralelementsarecriticalforkineticactivity
AT limeeqing vibriocholeraespegspermidinesperminenacetyltransferaseallostericloopandb6b7structuralelementsarecriticalforkineticactivity
AT renolorosselini vibriocholeraespegspermidinesperminenacetyltransferaseallostericloopandb6b7structuralelementsarecriticalforkineticactivity
AT forwoodjadek vibriocholeraespegspermidinesperminenacetyltransferaseallostericloopandb6b7structuralelementsarecriticalforkineticactivity
AT kuhnmistyl vibriocholeraespegspermidinesperminenacetyltransferaseallostericloopandb6b7structuralelementsarecriticalforkineticactivity