Cargando…

NMR Insights into Folding and Self-Association of Plasmodium falciparum P2

The eukaryotic 60S-ribosomal stalk is composed of acidic ribosomal proteins (P1 and P2) and neutral protein P0, which are thought to be associated as a pentameric structure, [2P1, 2P2, P0]. Plasmodium falciparum P2 (PfP2) appears to play additional non-ribosomal functions associated with its tendenc...

Descripción completa

Detalles Bibliográficos
Autores principales: Mishra, Pushpa, Das, Sudipta, Panicker, Lata, Hosur, Madhusoodan V., Sharma, Shobhona, Hosur, Ramakrishna V.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3342256/
https://www.ncbi.nlm.nih.gov/pubmed/22567147
http://dx.doi.org/10.1371/journal.pone.0036279
_version_ 1782231665951637504
author Mishra, Pushpa
Das, Sudipta
Panicker, Lata
Hosur, Madhusoodan V.
Sharma, Shobhona
Hosur, Ramakrishna V.
author_facet Mishra, Pushpa
Das, Sudipta
Panicker, Lata
Hosur, Madhusoodan V.
Sharma, Shobhona
Hosur, Ramakrishna V.
author_sort Mishra, Pushpa
collection PubMed
description The eukaryotic 60S-ribosomal stalk is composed of acidic ribosomal proteins (P1 and P2) and neutral protein P0, which are thought to be associated as a pentameric structure, [2P1, 2P2, P0]. Plasmodium falciparum P2 (PfP2) appears to play additional non-ribosomal functions associated with its tendency for homo-oligomerization. Recombinant bacterially expressed PfP2 protein also undergoes self-association, as shown by SDS-PAGE analysis and light scattering studies. Secondary structure prediction algorithms predict the native PfP2 protein to be largely helical and this is corroborated by circular dichroism investigation. The (1)H-(15)N HSQC spectrum of native P2 showed only 43 cross peaks compared to the expected 138. The observed peaks were found to belong to the C-terminal region, suggesting that this segment is flexible and solvent exposed. In 9 M urea denaturing conditions the chain exhibited mostly non-native β structural propensity. (15)N Relaxation data for the denatured state indicated substantial variation in ms-µs time scale motion along the chain. Average area buried upon folding (AABUF) calculations on the monomer enabled identification of hydrophobic patches along the sequence. Interestingly, the segments of slower motion in the denatured state coincided with these hydrophobic patches, suggesting that in the denatured state the monomeric chain undergoes transient hydrophobic collapse. The implications of these results for the folding mechanism and self-association of PfP2 are discussed.
format Online
Article
Text
id pubmed-3342256
institution National Center for Biotechnology Information
language English
publishDate 2012
publisher Public Library of Science
record_format MEDLINE/PubMed
spelling pubmed-33422562012-05-07 NMR Insights into Folding and Self-Association of Plasmodium falciparum P2 Mishra, Pushpa Das, Sudipta Panicker, Lata Hosur, Madhusoodan V. Sharma, Shobhona Hosur, Ramakrishna V. PLoS One Research Article The eukaryotic 60S-ribosomal stalk is composed of acidic ribosomal proteins (P1 and P2) and neutral protein P0, which are thought to be associated as a pentameric structure, [2P1, 2P2, P0]. Plasmodium falciparum P2 (PfP2) appears to play additional non-ribosomal functions associated with its tendency for homo-oligomerization. Recombinant bacterially expressed PfP2 protein also undergoes self-association, as shown by SDS-PAGE analysis and light scattering studies. Secondary structure prediction algorithms predict the native PfP2 protein to be largely helical and this is corroborated by circular dichroism investigation. The (1)H-(15)N HSQC spectrum of native P2 showed only 43 cross peaks compared to the expected 138. The observed peaks were found to belong to the C-terminal region, suggesting that this segment is flexible and solvent exposed. In 9 M urea denaturing conditions the chain exhibited mostly non-native β structural propensity. (15)N Relaxation data for the denatured state indicated substantial variation in ms-µs time scale motion along the chain. Average area buried upon folding (AABUF) calculations on the monomer enabled identification of hydrophobic patches along the sequence. Interestingly, the segments of slower motion in the denatured state coincided with these hydrophobic patches, suggesting that in the denatured state the monomeric chain undergoes transient hydrophobic collapse. The implications of these results for the folding mechanism and self-association of PfP2 are discussed. Public Library of Science 2012-05-02 /pmc/articles/PMC3342256/ /pubmed/22567147 http://dx.doi.org/10.1371/journal.pone.0036279 Text en Mishra 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
Mishra, Pushpa
Das, Sudipta
Panicker, Lata
Hosur, Madhusoodan V.
Sharma, Shobhona
Hosur, Ramakrishna V.
NMR Insights into Folding and Self-Association of Plasmodium falciparum P2
title NMR Insights into Folding and Self-Association of Plasmodium falciparum P2
title_full NMR Insights into Folding and Self-Association of Plasmodium falciparum P2
title_fullStr NMR Insights into Folding and Self-Association of Plasmodium falciparum P2
title_full_unstemmed NMR Insights into Folding and Self-Association of Plasmodium falciparum P2
title_short NMR Insights into Folding and Self-Association of Plasmodium falciparum P2
title_sort nmr insights into folding and self-association of plasmodium falciparum p2
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3342256/
https://www.ncbi.nlm.nih.gov/pubmed/22567147
http://dx.doi.org/10.1371/journal.pone.0036279
work_keys_str_mv AT mishrapushpa nmrinsightsintofoldingandselfassociationofplasmodiumfalciparump2
AT dassudipta nmrinsightsintofoldingandselfassociationofplasmodiumfalciparump2
AT panickerlata nmrinsightsintofoldingandselfassociationofplasmodiumfalciparump2
AT hosurmadhusoodanv nmrinsightsintofoldingandselfassociationofplasmodiumfalciparump2
AT sharmashobhona nmrinsightsintofoldingandselfassociationofplasmodiumfalciparump2
AT hosurramakrishnav nmrinsightsintofoldingandselfassociationofplasmodiumfalciparump2