Publications

Publications, Books, Book Chapters and Reviews by Prof. Marcus Maurer, MD

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A novel deep intronic SERPING1 variant as a cause of hereditary angioedema due to C1-inhibitor deficiency

Filename 390. Vatsiou et al., SERPING1, Allergol Int 2020.pdf
Filesize 773.56 KB
Version o.390
Date added August 8, 2020
Downloaded 2 times
Category Original Work
Tags C1 inhibitor deficiency, Hereditary Angioedema, Intronic mutations, Next-generation sequencing, SERPING1 gene
Authors Vatsiou, S., Zamanakou, M., Loules, G., Psarros, F., Parsopoulou, F., Csuka, D., Valerieva, A., Staevska, M., Porebski, G., Obtulowicz, K., Magerl, M., Maurer, M., Speletas, M., Farkas, H., and Germenis, A. E.
Citation Vatsiou, S., Zamanakou, M., Loules, G., Psarros, F., Parsopoulou, F., Csuka, D., Valerieva, A., Staevska, M., Porebski, G., Obtulowicz, K., Magerl, M., Maurer, M., Speletas, M., Farkas, H., and Germenis, A. E.: A novel deep intronic SERPING1 variant as a cause of hereditary angioedema due to C1-inhibitor deficiency. Allergol. Int. 2020: 69; 443-449.
Corresponding authors Germenis, A. E.
DocNum o.390
DocType PDF
IF 5.84
Publisher Allergol. Int.
ReleaseDate 2020

Background: In about 5% of patients with hereditary angioedema due to C1-inhibitor deficiency (C1-INHHAE) no mutation in the SERPING1 gene is detected.

Methods: C1-INH-HAE cases with no mutation in the coding region of SERPING1 after conventional genotyping were examined for defects in the intronic or untranslated regions of the gene. Using a nextgeneration sequencing (NGS) platform targeting the entire SERPING1, 14 unrelated C1-INH-HAE patients with no detectable mutations in the coding region of the gene were sequenced. Detected variants with a global minor allele frequency lower than the frequency of C1-INH-HAE (0.002%), were submitted to in silico analysis using ten different bioinformatics tools. Pedigree analysis and examination of their pathogenic effect on the RNA level were performed for filtered in variants.

Results: In two unrelated patients, the novel mutation c.-22-155G > T was detected in intron 1 of the SERPING1 gene by the use NGS and confirmed by Sanger sequencing. All bioinformatics tools predicted that the variant causes a deleterious effect on the gene and pedigree analysis showed its co-segregation with the disease. Degradation of the mutated allele was demonstrated by the loss of heterozygosity on the cDNA level. According to the American College of Medical Genetics and Genomics 2015 guidelines the c.-22-155G > T was curated as pathogenic.

Conclusions: For the first time, a deep intronic mutation that was detected by NGS in the SERPING1 gene, was proven pathogenic for C1-INH-HAE. Therefore, advanced DNA sequencing methods should be performed in cases of C1-INH-HAE where standard approaches fail to uncover the genetic alteration. Copyright © 2020, Japanese Society of Allergology. Production and hosting by Elsevier B.V. This is an open access

 

(Last update: 12.2023)

Number of original publications in peer-reviewed journals:580
Number of reviews in peer-reviewed journals:210
Number of publications (original work and reviews) in peer-reviewed journals:790
Cumulative IF for original publications in peer-reviewed journals:4196.39
Cumulative IF for reviews in peer-reviewed journals:1409.32
Cumulative IF of publications (original work & reviews) in peer-reviewed journals:5605.71
Total number of citations: 36,836, h-index: 99 (Web of Science December 2023)36836

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