Ribosomal protein SA and its pseudogenes in ruminants: an extremely conserved gene family

The ribosomal protein SA (RPSA), also known as 37-kDa laminin receptor precursor/67-kDa laminin receptor (LRP/LR), has been identified as a multifunctional protein, playing an important role in multiple pathologies like cancer and prion diseases. Since RPSA is involved in the binding and internaliza...

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Main Authors: A. Van den Broeke, M. Van Poucke, A. Van Zeveren, L.J. Peelman
Format: Article
Language:English
Published: Czech Academy of Agricultural Sciences 2013-02-01
Series:Czech Journal of Animal Science
Subjects:
Online Access:https://cjas.agriculturejournals.cz/artkey/cjs-201302-0005_ribosomal-protein-sa-and-its-pseudogenes-in-ruminants-an-extremely-conserved-gene-family.php
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author A. Van den Broeke
M. Van Poucke
A. Van Zeveren
L.J. Peelman
author_facet A. Van den Broeke
M. Van Poucke
A. Van Zeveren
L.J. Peelman
author_sort A. Van den Broeke
collection DOAJ
description The ribosomal protein SA (RPSA), also known as 37-kDa laminin receptor precursor/67-kDa laminin receptor (LRP/LR), has been identified as a multifunctional protein, playing an important role in multiple pathologies like cancer and prion diseases. Since RPSA is involved in the binding and internalization of the prion protein, mutations in the ovine RPSA gene, influencing the RPSA-PrPC/PrPSc binding, can potentially play a part in the resistance to prion diseases. Our goal was to further characterize the complex RPSA gene family and to detect structural mutations which can play a role in this disease. In a prior study, 11 ovine pseudogenes were detected experimentally. As the whole genome shotgun ovine genome became accessible, an in silico genome-wide screening was performed and 37 new pseudogenes (36 processed and one semi-processed pseudogene) were detected, bringing the total to 48 ovine RPSA pseudogenes. Additionally, the complete bovine genome was screened in silico and 56 pseudogenes were identified. Once these sequences were known, it was possible to analyze the presence of mutations in the coding sequence and exon-flanking regions of the ovine functional full-length RPSA gene without the interference of pseudogenic sequences. Nineteen mutations were found: one in the 5' UTR, a silent one in the coding region, and seventeen in the exon-flanking regions, including an interesting mutation in the SNORA62 gene, localized in intron 4 of RPSA, leading to potential ribosomal defects. Structural mutations of the RPSA gene can be ruled out to play a role in transmissible spongiform encephalopathies but regulatory mutations still can have an effect on these diseases.
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spelling doaj.art-3123ee39c3cf476aadd36737c4e00c5e2023-02-23T03:33:06ZengCzech Academy of Agricultural SciencesCzech Journal of Animal Science1212-18191805-93092013-02-01582799010.17221/6618-CJAScjs-201302-0005Ribosomal protein SA and its pseudogenes in ruminants: an extremely conserved gene familyA. Van den Broeke0M. Van Poucke1A. Van Zeveren2L.J. Peelman3Department of Nutrition, Genetics and Ethology, Faculty of Veterinary Medicine, Ghent University, Merelbeke, BelgiumDepartment of Nutrition, Genetics and Ethology, Faculty of Veterinary Medicine, Ghent University, Merelbeke, BelgiumDepartment of Nutrition, Genetics and Ethology, Faculty of Veterinary Medicine, Ghent University, Merelbeke, BelgiumDepartment of Nutrition, Genetics and Ethology, Faculty of Veterinary Medicine, Ghent University, Merelbeke, BelgiumThe ribosomal protein SA (RPSA), also known as 37-kDa laminin receptor precursor/67-kDa laminin receptor (LRP/LR), has been identified as a multifunctional protein, playing an important role in multiple pathologies like cancer and prion diseases. Since RPSA is involved in the binding and internalization of the prion protein, mutations in the ovine RPSA gene, influencing the RPSA-PrPC/PrPSc binding, can potentially play a part in the resistance to prion diseases. Our goal was to further characterize the complex RPSA gene family and to detect structural mutations which can play a role in this disease. In a prior study, 11 ovine pseudogenes were detected experimentally. As the whole genome shotgun ovine genome became accessible, an in silico genome-wide screening was performed and 37 new pseudogenes (36 processed and one semi-processed pseudogene) were detected, bringing the total to 48 ovine RPSA pseudogenes. Additionally, the complete bovine genome was screened in silico and 56 pseudogenes were identified. Once these sequences were known, it was possible to analyze the presence of mutations in the coding sequence and exon-flanking regions of the ovine functional full-length RPSA gene without the interference of pseudogenic sequences. Nineteen mutations were found: one in the 5' UTR, a silent one in the coding region, and seventeen in the exon-flanking regions, including an interesting mutation in the SNORA62 gene, localized in intron 4 of RPSA, leading to potential ribosomal defects. Structural mutations of the RPSA gene can be ruled out to play a role in transmissible spongiform encephalopathies but regulatory mutations still can have an effect on these diseases.https://cjas.agriculturejournals.cz/artkey/cjs-201302-0005_ribosomal-protein-sa-and-its-pseudogenes-in-ruminants-an-extremely-conserved-gene-family.phplaminin receptormutation detectionprionpolymorphismrpsasequence conservation37 kda laminin receptor precursor/67-kda laminin receptor
spellingShingle A. Van den Broeke
M. Van Poucke
A. Van Zeveren
L.J. Peelman
Ribosomal protein SA and its pseudogenes in ruminants: an extremely conserved gene family
Czech Journal of Animal Science
laminin receptor
mutation detection
prion
polymorphism
rpsa
sequence conservation
37 kda laminin receptor precursor/67-kda laminin receptor
title Ribosomal protein SA and its pseudogenes in ruminants: an extremely conserved gene family
title_full Ribosomal protein SA and its pseudogenes in ruminants: an extremely conserved gene family
title_fullStr Ribosomal protein SA and its pseudogenes in ruminants: an extremely conserved gene family
title_full_unstemmed Ribosomal protein SA and its pseudogenes in ruminants: an extremely conserved gene family
title_short Ribosomal protein SA and its pseudogenes in ruminants: an extremely conserved gene family
title_sort ribosomal protein sa and its pseudogenes in ruminants an extremely conserved gene family
topic laminin receptor
mutation detection
prion
polymorphism
rpsa
sequence conservation
37 kda laminin receptor precursor/67-kda laminin receptor
url https://cjas.agriculturejournals.cz/artkey/cjs-201302-0005_ribosomal-protein-sa-and-its-pseudogenes-in-ruminants-an-extremely-conserved-gene-family.php
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