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Structure and Non-Structure of Centrosomal Proteins

Here we perform a large-scale study of the structural properties and the expression of proteins that constitute the human Centrosome. Centrosomal proteins tend to be larger than generic human proteins (control set), since their genes contain in average more exons (20.3 versus 14.6). They are rich in...

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Autores principales: Dos Santos, Helena G., Abia, David, Janowski, Robert, Mortuza, Gulnahar, Bertero, Michela G., Boutin, Maïlys, Guarín, Nayibe, Méndez-Giraldez, Raúl, Nuñez, Alfonso, Pedrero, Juan G., Redondo, Pilar, Sanz, María, Speroni, Silvia, Teichert, Florian, Bruix, Marta, Carazo, José M., Gonzalez, Cayetano, Reina, José, Valpuesta, José M., Vernos, Isabelle, Zabala, Juan C., Montoya, Guillermo, Coll, Miquel, Bastolla, Ugo, Serrano, Luis
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3650010/
https://www.ncbi.nlm.nih.gov/pubmed/23671615
http://dx.doi.org/10.1371/journal.pone.0062633
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author Dos Santos, Helena G.
Abia, David
Janowski, Robert
Mortuza, Gulnahar
Bertero, Michela G.
Boutin, Maïlys
Guarín, Nayibe
Méndez-Giraldez, Raúl
Nuñez, Alfonso
Pedrero, Juan G.
Redondo, Pilar
Sanz, María
Speroni, Silvia
Teichert, Florian
Bruix, Marta
Carazo, José M.
Gonzalez, Cayetano
Reina, José
Valpuesta, José M.
Vernos, Isabelle
Zabala, Juan C.
Montoya, Guillermo
Coll, Miquel
Bastolla, Ugo
Serrano, Luis
author_facet Dos Santos, Helena G.
Abia, David
Janowski, Robert
Mortuza, Gulnahar
Bertero, Michela G.
Boutin, Maïlys
Guarín, Nayibe
Méndez-Giraldez, Raúl
Nuñez, Alfonso
Pedrero, Juan G.
Redondo, Pilar
Sanz, María
Speroni, Silvia
Teichert, Florian
Bruix, Marta
Carazo, José M.
Gonzalez, Cayetano
Reina, José
Valpuesta, José M.
Vernos, Isabelle
Zabala, Juan C.
Montoya, Guillermo
Coll, Miquel
Bastolla, Ugo
Serrano, Luis
author_sort Dos Santos, Helena G.
collection PubMed
description Here we perform a large-scale study of the structural properties and the expression of proteins that constitute the human Centrosome. Centrosomal proteins tend to be larger than generic human proteins (control set), since their genes contain in average more exons (20.3 versus 14.6). They are rich in predicted disordered regions, which cover 57% of their length, compared to 39% in the general human proteome. They also contain several regions that are dually predicted to be disordered and coiled-coil at the same time: 55 proteins (15%) contain disordered and coiled-coil fragments that cover more than 20% of their length. Helices prevail over strands in regions homologous to known structures (47% predicted helical residues against 17% predicted as strands), and even more in the whole centrosomal proteome (52% against 7%), while for control human proteins 34.5% of the residues are predicted as helical and 12.8% are predicted as strands. This difference is mainly due to residues predicted as disordered and helical (30% in centrosomal and 9.4% in control proteins), which may correspond to alpha-helix forming molecular recognition features (α-MoRFs). We performed expression assays for 120 full-length centrosomal proteins and 72 domain constructs that we have predicted to be globular. These full-length proteins are often insoluble: Only 39 out of 120 expressed proteins (32%) and 19 out of 72 domains (26%) were soluble. We built or retrieved structural models for 277 out of 361 human proteins whose centrosomal localization has been experimentally verified. We could not find any suitable structural template with more than 20% sequence identity for 84 centrosomal proteins (23%), for which around 74% of the residues are predicted to be disordered or coiled-coils. The three-dimensional models that we built are available at http://ub.cbm.uam.es/centrosome/models/index.php.
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spelling pubmed-36500102013-05-13 Structure and Non-Structure of Centrosomal Proteins Dos Santos, Helena G. Abia, David Janowski, Robert Mortuza, Gulnahar Bertero, Michela G. Boutin, Maïlys Guarín, Nayibe Méndez-Giraldez, Raúl Nuñez, Alfonso Pedrero, Juan G. Redondo, Pilar Sanz, María Speroni, Silvia Teichert, Florian Bruix, Marta Carazo, José M. Gonzalez, Cayetano Reina, José Valpuesta, José M. Vernos, Isabelle Zabala, Juan C. Montoya, Guillermo Coll, Miquel Bastolla, Ugo Serrano, Luis PLoS One Research Article Here we perform a large-scale study of the structural properties and the expression of proteins that constitute the human Centrosome. Centrosomal proteins tend to be larger than generic human proteins (control set), since their genes contain in average more exons (20.3 versus 14.6). They are rich in predicted disordered regions, which cover 57% of their length, compared to 39% in the general human proteome. They also contain several regions that are dually predicted to be disordered and coiled-coil at the same time: 55 proteins (15%) contain disordered and coiled-coil fragments that cover more than 20% of their length. Helices prevail over strands in regions homologous to known structures (47% predicted helical residues against 17% predicted as strands), and even more in the whole centrosomal proteome (52% against 7%), while for control human proteins 34.5% of the residues are predicted as helical and 12.8% are predicted as strands. This difference is mainly due to residues predicted as disordered and helical (30% in centrosomal and 9.4% in control proteins), which may correspond to alpha-helix forming molecular recognition features (α-MoRFs). We performed expression assays for 120 full-length centrosomal proteins and 72 domain constructs that we have predicted to be globular. These full-length proteins are often insoluble: Only 39 out of 120 expressed proteins (32%) and 19 out of 72 domains (26%) were soluble. We built or retrieved structural models for 277 out of 361 human proteins whose centrosomal localization has been experimentally verified. We could not find any suitable structural template with more than 20% sequence identity for 84 centrosomal proteins (23%), for which around 74% of the residues are predicted to be disordered or coiled-coils. The three-dimensional models that we built are available at http://ub.cbm.uam.es/centrosome/models/index.php. Public Library of Science 2013-05-09 /pmc/articles/PMC3650010/ /pubmed/23671615 http://dx.doi.org/10.1371/journal.pone.0062633 Text en © 2013 Dos Santos et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Dos Santos, Helena G.
Abia, David
Janowski, Robert
Mortuza, Gulnahar
Bertero, Michela G.
Boutin, Maïlys
Guarín, Nayibe
Méndez-Giraldez, Raúl
Nuñez, Alfonso
Pedrero, Juan G.
Redondo, Pilar
Sanz, María
Speroni, Silvia
Teichert, Florian
Bruix, Marta
Carazo, José M.
Gonzalez, Cayetano
Reina, José
Valpuesta, José M.
Vernos, Isabelle
Zabala, Juan C.
Montoya, Guillermo
Coll, Miquel
Bastolla, Ugo
Serrano, Luis
Structure and Non-Structure of Centrosomal Proteins
title Structure and Non-Structure of Centrosomal Proteins
title_full Structure and Non-Structure of Centrosomal Proteins
title_fullStr Structure and Non-Structure of Centrosomal Proteins
title_full_unstemmed Structure and Non-Structure of Centrosomal Proteins
title_short Structure and Non-Structure of Centrosomal Proteins
title_sort structure and non-structure of centrosomal proteins
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3650010/
https://www.ncbi.nlm.nih.gov/pubmed/23671615
http://dx.doi.org/10.1371/journal.pone.0062633
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