Go to:
Logótipo
Comuta visibilidade da coluna esquerda
Você está em: Start > Publications > View > Modeling of Human Fatty Acid Synthase and &ITin Silico&IT Docking of Acyl Carrier Protein Domain and Its Partner Catalytic Domains
Publication

Modeling of Human Fatty Acid Synthase and &ITin Silico&IT Docking of Acyl Carrier Protein Domain and Its Partner Catalytic Domains

Title
Modeling of Human Fatty Acid Synthase and &ITin Silico&IT Docking of Acyl Carrier Protein Domain and Its Partner Catalytic Domains
Type
Article in International Scientific Journal
Year
2018
Authors
Viegas, MF
(Author)
Other
The person does not belong to the institution. The person does not belong to the institution. The person does not belong to the institution. Without AUTHENTICUS Without ORCID
Neves, RPP
(Author)
FCUP
View Personal Page You do not have permissions to view the institutional email. Search for Participant Publications View Authenticus page View ORCID page
Ramos, MJ
(Author)
FCUP
View Personal Page You do not have permissions to view the institutional email. Search for Participant Publications View Authenticus page View ORCID page
Journal
Vol. 122
Pages: 77-85
ISSN: 1520-6106
Other information
Authenticus ID: P-00N-GT8
Abstract (EN): Human fatty acid synthase (hFAS) is a megasynthase whose main function is de novo biosynthesis of saturated fatty acids. Interest has been drawn to this enzyme beyond its physiological role due to the association between high levels of hFAS and clinical conditions such as obesity, diabetes, and cancer. Thus, it has become an undeniably attractive pharmacological target. Until now, no crystal structure of the complete hFAS is available, hindering attempts to fully understand this protein. Using homology modeling, we built a model of the entire megasynthase, encompassing all of its domains, including the acyl carrier protein (ACP) and thioesterase (TE) mobile domains absent in the crystal structure of mammalian fatty acid synthase (FAS). On a second stage, we used data-driven protein-protein docking between the substrate shuttling domain ACP and every catalytic domain in the protein. We also propose sets of amino acids at the interface of each domain that we believe are important to favor the interaction between ACP and each domain of hFAS. After inspection, we validated each complex between ACP and MAT/KS/KR/DH/ER domains through classical molecular dynamics simulations and RMSd analysis. Additionally, we mapped the interactions between the residues at the active site of each catalytic domain and its intermediaries. In every docking, we ensured that the distance between catalytic residues and the intermediaries was maintained. Until now, there was not a complete 3D model of this megasynthase. This study is the first to present a homology model for the whole hFAS, including its two mobile domains and possible poses of ACP throughout the cycle of fatty acid biosynthesis, thus mapping obligatory checkpoints in its trajectory. Hence, we believe that these structural insights will allow for future studies of the catalytic mechanism of the overall hFAS.
Language: English
Type (Professor's evaluation): Scientific
No. of pages: 9
Documents
We could not find any documents associated to the publication.
Related Publications

Of the same authors

Engineering of PKS Megaenzymes-A Promising Way to Biosynthesize High-Value Active Molecules (2022)
Article in International Scientific Journal
Neves, RPP; Ferreira, P; Medina, FE; Paiva, P; Sousa, JPM; Viegas, MF; Pedro A Fernandes; Ramos, MJ

Of the same journal

Solubilities of Biologically Active Phenolic Compounds: Measurements and Modeling (vol 113, pg 3473, 2009) (2009)
Other Publications
António J. Queimada; Fátima L. Mota; Simão P. Pinho; Eugénia A. Macedo
1H NMR and Molecular Dynamics Evidence for an Unexpected Interaction on the Origin of Salting-In/Salting-Out Phenomena (2010)
Article in International Scientific Journal
Mara G. Freire; Catarina M. S. S. Neves; Artur M. S. Silva; Luís M. N. B. F. Santos; Isabel M. Marrucho; Luís P. N. Rebelo; Jindal K. Shah; Edward J. Maginn; João A. P. Coutinho
Water solubility in linear fluoroalkanes used in blood substitute formulations (2006)
Article in International Scientific Journal
Mara G Freire; Ligia Gomes; Luis M N B F Santos; Isabel M Marrucho; Joao A P Coutinho
Vesicle formation and general phase behavior in the catanionic mixture SDS-DDAB-water. The cationic-rich side (1999)
Article in International Scientific Journal
Marques, EF; Regev, O; Khan, A; Miguel, MD; Lindman, B
Vesicle formation and general phase behavior in the catanionic mixture SDS-DDAB-water. The anionic-rich side (1998)
Article in International Scientific Journal
Marques, EF; Regev, O; Khan, A; Miguel, MD; Lindman, B

See all (144)

Recommend this page Top
Copyright 1996-2024 © Reitoria da Universidade do Porto  I Terms and Conditions  I Acessibility  I Index A-Z  I Guest Book
Page created on: 2024-10-20 06:48:16 | Acceptable Use Policy | Data Protection Policy | Complaint Portal