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Structural analysis of new compound heterozygous variants in PEPD gene identified in a patient with Prolidase Deficiency diagnosed by exome sequencing

Prolidase Deficiency (PD) is an autosomal recessive rare disorder caused by loss or reduction of prolidase enzymatic activity due to variants in the PEPD gene. PD clinical features vary among affected individuals: skin ulcerations, recurrent infections, and developmental delay are common. In this st...

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Autores principales: Linhares, Natália D., Wilk, Piotr, Wątor, Elżbieta, Tostes, Meire A., Weiss, Manfred S., Pena, Sergio D. J.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Sociedade Brasileira de Genética 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8056889/
https://www.ncbi.nlm.nih.gov/pubmed/33877262
http://dx.doi.org/10.1590/1678-4685-GMB-2020-0393
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author Linhares, Natália D.
Wilk, Piotr
Wątor, Elżbieta
Tostes, Meire A.
Weiss, Manfred S.
Pena, Sergio D. J.
author_facet Linhares, Natália D.
Wilk, Piotr
Wątor, Elżbieta
Tostes, Meire A.
Weiss, Manfred S.
Pena, Sergio D. J.
author_sort Linhares, Natália D.
collection PubMed
description Prolidase Deficiency (PD) is an autosomal recessive rare disorder caused by loss or reduction of prolidase enzymatic activity due to variants in the PEPD gene. PD clinical features vary among affected individuals: skin ulcerations, recurrent infections, and developmental delay are common. In this study, we describe a 16-year-old boy with a mild PD phenotype comprising chronic eczema, recurrent infections and elevated IgE. Whole exome sequencing analysis revealed three PEPD variants: c.575T>C p.(Leu192Pro) inherited from the mother, and c.692_694del p.(Tyr231del) and c.1409G>A p.(Arg470His), both inherited from the father. The variant p.(Tyr231del) has been previously characterized by high-resolution X-ray structure analysis as altering protein dynamics/flexibility. In order to study the effects of the other two prolidase variants, we performed site directed mutagenesis purification and crystallization studies. A high-resolution X-ray structure could only be obtained for the p.(Arg470His) variant, which showed no significant structural differences in comparison to WT prolidase. On the other hand, the p.(Leu192Pro) variant led to significant protein destabilization. Hence, we conclude that the maternal p.(Leu192Pro) variant was likely causally associated with the proband´s disease, together with the known pathogenic paternal variant p.(Tyr231del). Our results demonstrated the utility of exome sequencing to perform diagnosis in PD cases with mild phenotype.
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spelling pubmed-80568892021-05-03 Structural analysis of new compound heterozygous variants in PEPD gene identified in a patient with Prolidase Deficiency diagnosed by exome sequencing Linhares, Natália D. Wilk, Piotr Wątor, Elżbieta Tostes, Meire A. Weiss, Manfred S. Pena, Sergio D. J. Genet Mol Biol Human and Medical Genetics Prolidase Deficiency (PD) is an autosomal recessive rare disorder caused by loss or reduction of prolidase enzymatic activity due to variants in the PEPD gene. PD clinical features vary among affected individuals: skin ulcerations, recurrent infections, and developmental delay are common. In this study, we describe a 16-year-old boy with a mild PD phenotype comprising chronic eczema, recurrent infections and elevated IgE. Whole exome sequencing analysis revealed three PEPD variants: c.575T>C p.(Leu192Pro) inherited from the mother, and c.692_694del p.(Tyr231del) and c.1409G>A p.(Arg470His), both inherited from the father. The variant p.(Tyr231del) has been previously characterized by high-resolution X-ray structure analysis as altering protein dynamics/flexibility. In order to study the effects of the other two prolidase variants, we performed site directed mutagenesis purification and crystallization studies. A high-resolution X-ray structure could only be obtained for the p.(Arg470His) variant, which showed no significant structural differences in comparison to WT prolidase. On the other hand, the p.(Leu192Pro) variant led to significant protein destabilization. Hence, we conclude that the maternal p.(Leu192Pro) variant was likely causally associated with the proband´s disease, together with the known pathogenic paternal variant p.(Tyr231del). Our results demonstrated the utility of exome sequencing to perform diagnosis in PD cases with mild phenotype. Sociedade Brasileira de Genética 2021-04-19 /pmc/articles/PMC8056889/ /pubmed/33877262 http://dx.doi.org/10.1590/1678-4685-GMB-2020-0393 Text en https://creativecommons.org/licenses/by/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution License
spellingShingle Human and Medical Genetics
Linhares, Natália D.
Wilk, Piotr
Wątor, Elżbieta
Tostes, Meire A.
Weiss, Manfred S.
Pena, Sergio D. J.
Structural analysis of new compound heterozygous variants in PEPD gene identified in a patient with Prolidase Deficiency diagnosed by exome sequencing
title Structural analysis of new compound heterozygous variants in PEPD gene identified in a patient with Prolidase Deficiency diagnosed by exome sequencing
title_full Structural analysis of new compound heterozygous variants in PEPD gene identified in a patient with Prolidase Deficiency diagnosed by exome sequencing
title_fullStr Structural analysis of new compound heterozygous variants in PEPD gene identified in a patient with Prolidase Deficiency diagnosed by exome sequencing
title_full_unstemmed Structural analysis of new compound heterozygous variants in PEPD gene identified in a patient with Prolidase Deficiency diagnosed by exome sequencing
title_short Structural analysis of new compound heterozygous variants in PEPD gene identified in a patient with Prolidase Deficiency diagnosed by exome sequencing
title_sort structural analysis of new compound heterozygous variants in pepd gene identified in a patient with prolidase deficiency diagnosed by exome sequencing
topic Human and Medical Genetics
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8056889/
https://www.ncbi.nlm.nih.gov/pubmed/33877262
http://dx.doi.org/10.1590/1678-4685-GMB-2020-0393
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