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Organization of Plasmodium falciparum spliceosomal core complex and role of arginine methylation in its assembly

BACKGROUND: Splicing and alternate splicing are the two key biological processes that result in the generation of diverse transcript and protein isoforms in Plasmodium falciparum as well as in other eukaryotic organisms. Not much is known about the organization of splicing machinery and mechanisms i...

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Autores principales: Hossain, Manzar, Sharma, Shweta, Korde, Reshma, Kanodia, Shivani, Chugh, Monika, Rawat, Khushboo, Malhotra, Pawan
Formato: Online Artículo Texto
Lenguaje:English
Publicado: BioMed Central 2013
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Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3848767/
https://www.ncbi.nlm.nih.gov/pubmed/24047207
http://dx.doi.org/10.1186/1475-2875-12-333
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author Hossain, Manzar
Sharma, Shweta
Korde, Reshma
Kanodia, Shivani
Chugh, Monika
Rawat, Khushboo
Malhotra, Pawan
author_facet Hossain, Manzar
Sharma, Shweta
Korde, Reshma
Kanodia, Shivani
Chugh, Monika
Rawat, Khushboo
Malhotra, Pawan
author_sort Hossain, Manzar
collection PubMed
description BACKGROUND: Splicing and alternate splicing are the two key biological processes that result in the generation of diverse transcript and protein isoforms in Plasmodium falciparum as well as in other eukaryotic organisms. Not much is known about the organization of splicing machinery and mechanisms in human malaria parasite. Present study reports the organization and assembly of Plasmodium spliceosome Sm core complex. METHODS: Presence of all the seven Plasmodium Sm-like proteins in the intra-erythrocytic stages was assessed based on the protein(s) expression analysis using immuno-localization and western blotting. Localization/co-localization studies were performed by immunofluorescence analysis on thin parasite smear using laser scanning confocal microscope. Interaction studies were carried out using yeast two-hybrid analysis and validated by in vitro pull-down assays. PfPRMT5 (arginine methyl transferase) and PfSmD1 interaction analysis was performed by pull-down assays and the interacting proteins were identified by MALDI-TOF spectrometry. RESULTS: PfSm proteins are expressed at asexual blood stages of the parasite and show nucleo-cytoplasmic localization. Protein-protein interaction studies showed that PfSm proteins form a heptameric complex, typical of spliceosome core complex as shown in humans. Interaction of PfSMN (survival of motor neuron, tudor domain containing protein) or PfTu-TSN (Tudor domain of Tudor Staphylococcal nuclease) with PfSmD1 proteins was found to be methylation dependent. Co-localization by immunofluorescence and co-immunoprecipitation studies suggested an association between PfPRMT5 and PfSmD1, indicating the role of arginine methylation in assembly of Plasmodium spliceosome complex. CONCLUSIONS: Plasmodium Sm-like proteins form a heptameric ring-like structure, although the arrangement of PfSm proteins slightly differs from human splicing machinery. The data shows the interaction of PfSMN with PfSmD1 and this interaction is found to be methylation dependent. PfPRMT5 probably exists as a part of methylosome complex that may function in the cytoplasmic assembly of Sm proteins at asexual blood stages of P. falciparum.
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spelling pubmed-38487672013-12-04 Organization of Plasmodium falciparum spliceosomal core complex and role of arginine methylation in its assembly Hossain, Manzar Sharma, Shweta Korde, Reshma Kanodia, Shivani Chugh, Monika Rawat, Khushboo Malhotra, Pawan Malar J Research BACKGROUND: Splicing and alternate splicing are the two key biological processes that result in the generation of diverse transcript and protein isoforms in Plasmodium falciparum as well as in other eukaryotic organisms. Not much is known about the organization of splicing machinery and mechanisms in human malaria parasite. Present study reports the organization and assembly of Plasmodium spliceosome Sm core complex. METHODS: Presence of all the seven Plasmodium Sm-like proteins in the intra-erythrocytic stages was assessed based on the protein(s) expression analysis using immuno-localization and western blotting. Localization/co-localization studies were performed by immunofluorescence analysis on thin parasite smear using laser scanning confocal microscope. Interaction studies were carried out using yeast two-hybrid analysis and validated by in vitro pull-down assays. PfPRMT5 (arginine methyl transferase) and PfSmD1 interaction analysis was performed by pull-down assays and the interacting proteins were identified by MALDI-TOF spectrometry. RESULTS: PfSm proteins are expressed at asexual blood stages of the parasite and show nucleo-cytoplasmic localization. Protein-protein interaction studies showed that PfSm proteins form a heptameric complex, typical of spliceosome core complex as shown in humans. Interaction of PfSMN (survival of motor neuron, tudor domain containing protein) or PfTu-TSN (Tudor domain of Tudor Staphylococcal nuclease) with PfSmD1 proteins was found to be methylation dependent. Co-localization by immunofluorescence and co-immunoprecipitation studies suggested an association between PfPRMT5 and PfSmD1, indicating the role of arginine methylation in assembly of Plasmodium spliceosome complex. CONCLUSIONS: Plasmodium Sm-like proteins form a heptameric ring-like structure, although the arrangement of PfSm proteins slightly differs from human splicing machinery. The data shows the interaction of PfSMN with PfSmD1 and this interaction is found to be methylation dependent. PfPRMT5 probably exists as a part of methylosome complex that may function in the cytoplasmic assembly of Sm proteins at asexual blood stages of P. falciparum. BioMed Central 2013-09-18 /pmc/articles/PMC3848767/ /pubmed/24047207 http://dx.doi.org/10.1186/1475-2875-12-333 Text en Copyright © 2013 Hossain et al.; licensee BioMed Central Ltd. http://creativecommons.org/licenses/by/2.0 This is an Open Access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/2.0), which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research
Hossain, Manzar
Sharma, Shweta
Korde, Reshma
Kanodia, Shivani
Chugh, Monika
Rawat, Khushboo
Malhotra, Pawan
Organization of Plasmodium falciparum spliceosomal core complex and role of arginine methylation in its assembly
title Organization of Plasmodium falciparum spliceosomal core complex and role of arginine methylation in its assembly
title_full Organization of Plasmodium falciparum spliceosomal core complex and role of arginine methylation in its assembly
title_fullStr Organization of Plasmodium falciparum spliceosomal core complex and role of arginine methylation in its assembly
title_full_unstemmed Organization of Plasmodium falciparum spliceosomal core complex and role of arginine methylation in its assembly
title_short Organization of Plasmodium falciparum spliceosomal core complex and role of arginine methylation in its assembly
title_sort organization of plasmodium falciparum spliceosomal core complex and role of arginine methylation in its assembly
topic Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3848767/
https://www.ncbi.nlm.nih.gov/pubmed/24047207
http://dx.doi.org/10.1186/1475-2875-12-333
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