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Updated: May 22, 2026

A Reporter Based Cellular Assay for Monitoring Splicing Efficiency
Published on: September 15, 2021
Detection of a novel splicing mutation causing analbuminemia in a Libyan family
Amina Bibi1, Latifa Jouini, Chaima Abdelhafidh Sahli
1Biochemistry Laboratory, Children's Hospital, Bab Saadoun Square, 1007, Tunis, Tunisia. amina.bibi@rns.tn
Background And Objectives:
Analbuminemia is a very rare autosomal recessive disorder. It is an allelic heterogeneous defect caused by a variety of mutations within the albumin gene. We describe in this report two new cases of analbuminemia in Libyans.
Design And Methods:
The 14 coding exons of the human serum albumin (HSA) gene and their intron-exon junctions were PCR amplified. The products were screened for mutations by Denaturing High Performance Liquid Chromatography (DHPLC). Samples with altered DHPLC profiles were sequenced.
Results:
DNA sequencing revealed the presence of a novol homozygous G➔T transition in the first base of intron 11 (c.1428+1G>T), in both children. This mutation destroys the GT consensus donor sequence found at the 5' end of most intervening sequences and would cause the defective pre-mRNA splicing.
Conclusion:
Molecular diagnosis based on DHPLC and DNA sequencing represents a powerful tool to study molecular defects causing analbuminemia.
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