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Bioinformatic Analysis and Biophysical Characterization Reveal Structural Disorder in G0S2 Protein

[Image: see text] G0S2 is a small protein of 103 residues in length that is involved in multiple cellular processes. To date, several reports have shown that G0S2 functions by making direct protein–protein interactions with key proteins. In lipolysis, G0S2 specifically interacts with adipose triglyc...

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Autores principales: Páez-Pérez, Edgar D., Llamas-García, Miriam Livier, Benítez-Cardoza, Claudia G., Montero-Morán, Gabriela M., Lara-González, Samuel
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Chemical Society 2020
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7557935/
https://www.ncbi.nlm.nih.gov/pubmed/33073109
http://dx.doi.org/10.1021/acsomega.0c03171
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author Páez-Pérez, Edgar D.
Llamas-García, Miriam Livier
Benítez-Cardoza, Claudia G.
Montero-Morán, Gabriela M.
Lara-González, Samuel
author_facet Páez-Pérez, Edgar D.
Llamas-García, Miriam Livier
Benítez-Cardoza, Claudia G.
Montero-Morán, Gabriela M.
Lara-González, Samuel
author_sort Páez-Pérez, Edgar D.
collection PubMed
description [Image: see text] G0S2 is a small protein of 103 residues in length that is involved in multiple cellular processes. To date, several reports have shown that G0S2 functions by making direct protein–protein interactions with key proteins. In lipolysis, G0S2 specifically interacts with adipose triglyceride lipase, inhibiting its activity and resulting in lipolysis being downregulated. In a similar way, G0S2 also participates in the regulation of apoptosis, cell proliferation, and oxidative phosphorylation; however, information regarding G0S2 structural and biophysical properties is limited. In this work, we conducted a comparative structural analysis of human and mouse G0S2 proteins. Bioinformatics suggests the presence of a disordered C-terminal region in human G0S2. Experimental characterization by size-exclusion chromatography and dynamic light scattering showed that human and mouse G0S2 have different hydrodynamic properties. In comparison to the mouse G0S2, which behaves similar to a globular protein, the human G0S2 shows an elongated conformation, most likely by displaying a disordered C-terminal region. Further analysis of hydrodynamic properties under denaturing conditions suggests the presence of a structural element in the mouse protein that undergoes an order to disorder transition at low urea concentration. Structural analysis by circular dichroism revealed that in native conditions, both proteins are mainly unstructured, showing the presence of beta sheet structures. Further analysis of CD data suggests that both proteins belong to the premolten globule family of intrinsically disordered proteins. We suggest that the intrinsic disorder observed in the G0S2 protein may facilitate its interaction with multiple partners in the regulation of cellular metabolism.
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spelling pubmed-75579352020-10-16 Bioinformatic Analysis and Biophysical Characterization Reveal Structural Disorder in G0S2 Protein Páez-Pérez, Edgar D. Llamas-García, Miriam Livier Benítez-Cardoza, Claudia G. Montero-Morán, Gabriela M. Lara-González, Samuel ACS Omega [Image: see text] G0S2 is a small protein of 103 residues in length that is involved in multiple cellular processes. To date, several reports have shown that G0S2 functions by making direct protein–protein interactions with key proteins. In lipolysis, G0S2 specifically interacts with adipose triglyceride lipase, inhibiting its activity and resulting in lipolysis being downregulated. In a similar way, G0S2 also participates in the regulation of apoptosis, cell proliferation, and oxidative phosphorylation; however, information regarding G0S2 structural and biophysical properties is limited. In this work, we conducted a comparative structural analysis of human and mouse G0S2 proteins. Bioinformatics suggests the presence of a disordered C-terminal region in human G0S2. Experimental characterization by size-exclusion chromatography and dynamic light scattering showed that human and mouse G0S2 have different hydrodynamic properties. In comparison to the mouse G0S2, which behaves similar to a globular protein, the human G0S2 shows an elongated conformation, most likely by displaying a disordered C-terminal region. Further analysis of hydrodynamic properties under denaturing conditions suggests the presence of a structural element in the mouse protein that undergoes an order to disorder transition at low urea concentration. Structural analysis by circular dichroism revealed that in native conditions, both proteins are mainly unstructured, showing the presence of beta sheet structures. Further analysis of CD data suggests that both proteins belong to the premolten globule family of intrinsically disordered proteins. We suggest that the intrinsic disorder observed in the G0S2 protein may facilitate its interaction with multiple partners in the regulation of cellular metabolism. American Chemical Society 2020-10-05 /pmc/articles/PMC7557935/ /pubmed/33073109 http://dx.doi.org/10.1021/acsomega.0c03171 Text en This is an open access article published under an ACS AuthorChoice License (http://pubs.acs.org/page/policy/authorchoice_termsofuse.html) , which permits copying and redistribution of the article or any adaptations for non-commercial purposes.
spellingShingle Páez-Pérez, Edgar D.
Llamas-García, Miriam Livier
Benítez-Cardoza, Claudia G.
Montero-Morán, Gabriela M.
Lara-González, Samuel
Bioinformatic Analysis and Biophysical Characterization Reveal Structural Disorder in G0S2 Protein
title Bioinformatic Analysis and Biophysical Characterization Reveal Structural Disorder in G0S2 Protein
title_full Bioinformatic Analysis and Biophysical Characterization Reveal Structural Disorder in G0S2 Protein
title_fullStr Bioinformatic Analysis and Biophysical Characterization Reveal Structural Disorder in G0S2 Protein
title_full_unstemmed Bioinformatic Analysis and Biophysical Characterization Reveal Structural Disorder in G0S2 Protein
title_short Bioinformatic Analysis and Biophysical Characterization Reveal Structural Disorder in G0S2 Protein
title_sort bioinformatic analysis and biophysical characterization reveal structural disorder in g0s2 protein
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7557935/
https://www.ncbi.nlm.nih.gov/pubmed/33073109
http://dx.doi.org/10.1021/acsomega.0c03171
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