Cargando…

A nucleotide deletion and frame-shift cause analbuminemia in a Turkish family

Congenital analbuminemia is an autosomal recessive disorder, in which albumin, the major blood protein, is present only in a minute amount. The condition is a rare allelic heterogeneous defect, only about seventy cases have been reported worldwide. To date, more than twenty different mutations withi...

Descripción completa

Detalles Bibliográficos
Autores principales: Caridi, Gianluca, Gulec, Elif Yilmaz, Campagnoli, Monica, Lugani, Francesca, Onal, Hasan, Kilic, Duzgun, Galliano, Monica, Minchiotti, Lorenzo
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Croatian Society of Medical Biochemistry and Laboratory Medicine 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4910280/
https://www.ncbi.nlm.nih.gov/pubmed/27346974
http://dx.doi.org/10.11613/BM.2016.031
_version_ 1782437987868475392
author Caridi, Gianluca
Gulec, Elif Yilmaz
Campagnoli, Monica
Lugani, Francesca
Onal, Hasan
Kilic, Duzgun
Galliano, Monica
Minchiotti, Lorenzo
author_facet Caridi, Gianluca
Gulec, Elif Yilmaz
Campagnoli, Monica
Lugani, Francesca
Onal, Hasan
Kilic, Duzgun
Galliano, Monica
Minchiotti, Lorenzo
author_sort Caridi, Gianluca
collection PubMed
description Congenital analbuminemia is an autosomal recessive disorder, in which albumin, the major blood protein, is present only in a minute amount. The condition is a rare allelic heterogeneous defect, only about seventy cases have been reported worldwide. To date, more than twenty different mutations within the albumin gene have been found to cause the trait. In our continuing study of the molecular genetics of congenital analbuminemia, we report here the clinical and biochemical findings and the mutation analysis of the gene in two Turkish infants. For the molecular analysis, we used our strategy, based on the screening of the gene by single-strand conformation polymorphism, heteroduplex analysis and direct DNA sequencing. The results showed that both patients are homozygous for the deletion of a cytosine residue in exon 5, in a stretch of four cytosines starting from nucleotide position 524 and ending at position 527 (NM_000477.5(ALB):c.527delC). The subsequent frame-shift inserts a stop codon in position 215, markedly reducing the size of the predicted protein product. The parents are both heterozygous for the same mutation, for which we propose the name Erzurum from the city of origin of the family. In conclusion, our results show that in this family congenital analbuminemia is caused by a novel frame-shift/deletion defect, confirm the inheritance of the trait, and contribute to advance our understanding of the molecular basis underlying this condition.
format Online
Article
Text
id pubmed-4910280
institution National Center for Biotechnology Information
language English
publishDate 2016
publisher Croatian Society of Medical Biochemistry and Laboratory Medicine
record_format MEDLINE/PubMed
spelling pubmed-49102802016-06-24 A nucleotide deletion and frame-shift cause analbuminemia in a Turkish family Caridi, Gianluca Gulec, Elif Yilmaz Campagnoli, Monica Lugani, Francesca Onal, Hasan Kilic, Duzgun Galliano, Monica Minchiotti, Lorenzo Biochem Med (Zagreb) Case Report Congenital analbuminemia is an autosomal recessive disorder, in which albumin, the major blood protein, is present only in a minute amount. The condition is a rare allelic heterogeneous defect, only about seventy cases have been reported worldwide. To date, more than twenty different mutations within the albumin gene have been found to cause the trait. In our continuing study of the molecular genetics of congenital analbuminemia, we report here the clinical and biochemical findings and the mutation analysis of the gene in two Turkish infants. For the molecular analysis, we used our strategy, based on the screening of the gene by single-strand conformation polymorphism, heteroduplex analysis and direct DNA sequencing. The results showed that both patients are homozygous for the deletion of a cytosine residue in exon 5, in a stretch of four cytosines starting from nucleotide position 524 and ending at position 527 (NM_000477.5(ALB):c.527delC). The subsequent frame-shift inserts a stop codon in position 215, markedly reducing the size of the predicted protein product. The parents are both heterozygous for the same mutation, for which we propose the name Erzurum from the city of origin of the family. In conclusion, our results show that in this family congenital analbuminemia is caused by a novel frame-shift/deletion defect, confirm the inheritance of the trait, and contribute to advance our understanding of the molecular basis underlying this condition. Croatian Society of Medical Biochemistry and Laboratory Medicine 2016-06-10 2016-06-10 /pmc/articles/PMC4910280/ /pubmed/27346974 http://dx.doi.org/10.11613/BM.2016.031 Text en
spellingShingle Case Report
Caridi, Gianluca
Gulec, Elif Yilmaz
Campagnoli, Monica
Lugani, Francesca
Onal, Hasan
Kilic, Duzgun
Galliano, Monica
Minchiotti, Lorenzo
A nucleotide deletion and frame-shift cause analbuminemia in a Turkish family
title A nucleotide deletion and frame-shift cause analbuminemia in a Turkish family
title_full A nucleotide deletion and frame-shift cause analbuminemia in a Turkish family
title_fullStr A nucleotide deletion and frame-shift cause analbuminemia in a Turkish family
title_full_unstemmed A nucleotide deletion and frame-shift cause analbuminemia in a Turkish family
title_short A nucleotide deletion and frame-shift cause analbuminemia in a Turkish family
title_sort nucleotide deletion and frame-shift cause analbuminemia in a turkish family
topic Case Report
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4910280/
https://www.ncbi.nlm.nih.gov/pubmed/27346974
http://dx.doi.org/10.11613/BM.2016.031
work_keys_str_mv AT caridigianluca anucleotidedeletionandframeshiftcauseanalbuminemiainaturkishfamily
AT gulecelifyilmaz anucleotidedeletionandframeshiftcauseanalbuminemiainaturkishfamily
AT campagnolimonica anucleotidedeletionandframeshiftcauseanalbuminemiainaturkishfamily
AT luganifrancesca anucleotidedeletionandframeshiftcauseanalbuminemiainaturkishfamily
AT onalhasan anucleotidedeletionandframeshiftcauseanalbuminemiainaturkishfamily
AT kilicduzgun anucleotidedeletionandframeshiftcauseanalbuminemiainaturkishfamily
AT gallianomonica anucleotidedeletionandframeshiftcauseanalbuminemiainaturkishfamily
AT minchiottilorenzo anucleotidedeletionandframeshiftcauseanalbuminemiainaturkishfamily
AT caridigianluca nucleotidedeletionandframeshiftcauseanalbuminemiainaturkishfamily
AT gulecelifyilmaz nucleotidedeletionandframeshiftcauseanalbuminemiainaturkishfamily
AT campagnolimonica nucleotidedeletionandframeshiftcauseanalbuminemiainaturkishfamily
AT luganifrancesca nucleotidedeletionandframeshiftcauseanalbuminemiainaturkishfamily
AT onalhasan nucleotidedeletionandframeshiftcauseanalbuminemiainaturkishfamily
AT kilicduzgun nucleotidedeletionandframeshiftcauseanalbuminemiainaturkishfamily
AT gallianomonica nucleotidedeletionandframeshiftcauseanalbuminemiainaturkishfamily
AT minchiottilorenzo nucleotidedeletionandframeshiftcauseanalbuminemiainaturkishfamily