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Revealing the Amylase Interactome in Whole Saliva Using Proteomic Approaches

Understanding proteins present in saliva and their function when isolated is not enough to describe their real role in the mouth. Due to protein-protein interactions, structural changes may occur in macromolecules leading to functional modulation or modification. Besides amylase's function in c...

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Autores principales: Crosara, Karla Tonelli Bicalho, Zuanazzi, David, Moffa, Eduardo Buozi, Xiao, Yizhi, Machado, Maria Aparecida de Andrade Moreira, Siqueira, Walter Luiz
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Hindawi 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5831883/
https://www.ncbi.nlm.nih.gov/pubmed/29662892
http://dx.doi.org/10.1155/2018/6346954
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author Crosara, Karla Tonelli Bicalho
Zuanazzi, David
Moffa, Eduardo Buozi
Xiao, Yizhi
Machado, Maria Aparecida de Andrade Moreira
Siqueira, Walter Luiz
author_facet Crosara, Karla Tonelli Bicalho
Zuanazzi, David
Moffa, Eduardo Buozi
Xiao, Yizhi
Machado, Maria Aparecida de Andrade Moreira
Siqueira, Walter Luiz
author_sort Crosara, Karla Tonelli Bicalho
collection PubMed
description Understanding proteins present in saliva and their function when isolated is not enough to describe their real role in the mouth. Due to protein-protein interactions, structural changes may occur in macromolecules leading to functional modulation or modification. Besides amylase's function in carbohydrate breakdown, amylase can delay proteolytic degradation of protein partners (e.g., histatin 1) when complexed. Due to its biochemical characteristics and high abundance in saliva, amylase probably interacts with several proteins acting as a biological carrier. This study focused on identifying interactions between amylase and other proteins found in whole saliva (WS) using proteomic approaches. Affinity chromatography was used, followed by gel electrophoresis methods, sodium dodecyl sulfate and native, tryptic in-solution and in-gel digestion, and mass spectrometry. We identified 66 proteins that interact with amylase in WS. Characterization of the identified proteins suggests that acidic (pI < 6.8) and low molecular weight (MW < 56 kDa) proteins have preference during amylase complex formation. Most of the identified proteins present biological functions related to host protection. A new protein-amylase network was constructed using the STRING database. Further studies are necessary to investigate individualities of the identified amylase interactors. These observations open avenues for more comprehensive studies on not yet fully characterized biological function of amylase.
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spelling pubmed-58318832018-04-16 Revealing the Amylase Interactome in Whole Saliva Using Proteomic Approaches Crosara, Karla Tonelli Bicalho Zuanazzi, David Moffa, Eduardo Buozi Xiao, Yizhi Machado, Maria Aparecida de Andrade Moreira Siqueira, Walter Luiz Biomed Res Int Research Article Understanding proteins present in saliva and their function when isolated is not enough to describe their real role in the mouth. Due to protein-protein interactions, structural changes may occur in macromolecules leading to functional modulation or modification. Besides amylase's function in carbohydrate breakdown, amylase can delay proteolytic degradation of protein partners (e.g., histatin 1) when complexed. Due to its biochemical characteristics and high abundance in saliva, amylase probably interacts with several proteins acting as a biological carrier. This study focused on identifying interactions between amylase and other proteins found in whole saliva (WS) using proteomic approaches. Affinity chromatography was used, followed by gel electrophoresis methods, sodium dodecyl sulfate and native, tryptic in-solution and in-gel digestion, and mass spectrometry. We identified 66 proteins that interact with amylase in WS. Characterization of the identified proteins suggests that acidic (pI < 6.8) and low molecular weight (MW < 56 kDa) proteins have preference during amylase complex formation. Most of the identified proteins present biological functions related to host protection. A new protein-amylase network was constructed using the STRING database. Further studies are necessary to investigate individualities of the identified amylase interactors. These observations open avenues for more comprehensive studies on not yet fully characterized biological function of amylase. Hindawi 2018-01-31 /pmc/articles/PMC5831883/ /pubmed/29662892 http://dx.doi.org/10.1155/2018/6346954 Text en Copyright © 2018 Karla Tonelli Bicalho Crosara et al. https://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Article
Crosara, Karla Tonelli Bicalho
Zuanazzi, David
Moffa, Eduardo Buozi
Xiao, Yizhi
Machado, Maria Aparecida de Andrade Moreira
Siqueira, Walter Luiz
Revealing the Amylase Interactome in Whole Saliva Using Proteomic Approaches
title Revealing the Amylase Interactome in Whole Saliva Using Proteomic Approaches
title_full Revealing the Amylase Interactome in Whole Saliva Using Proteomic Approaches
title_fullStr Revealing the Amylase Interactome in Whole Saliva Using Proteomic Approaches
title_full_unstemmed Revealing the Amylase Interactome in Whole Saliva Using Proteomic Approaches
title_short Revealing the Amylase Interactome in Whole Saliva Using Proteomic Approaches
title_sort revealing the amylase interactome in whole saliva using proteomic approaches
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5831883/
https://www.ncbi.nlm.nih.gov/pubmed/29662892
http://dx.doi.org/10.1155/2018/6346954
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