SERPINA11 related novel serpinopathy – A perinatal lethal disorder

Author:

Aggarwal Shagun12ORCID,Vineeth Venugopal Satidevi2,Padwal Shrutika S.234,Bhat Sameer Ahmed3,Singh Arpita35,Kulkarni Aditya6,Patil Mallikarjun1,Tallapaka Karthik7,Pasumarthi Divya2,Venkatapuram Vijayasree12,Thotakura Pragna Lakshmi2,Dalal Ashwin2,Bhandari Rashna3ORCID

Affiliation:

1. Department of Medical Genetics Nizam's Institute of Medical Sciences Hyderabad India

2. Laboratory of Human and Medical Genetics Centre for DNA Fingerprinting and Diagnostics Hyderabad India

3. Laboratory of Cell Signalling Centre for DNA Fingerprinting and Diagnostics Hyderabad India

4. Manipal Academy of Higher Education Manipal India

5. Regional Centre for Biotechnology Faridabad India

6. Department of Histopathology Apollo Hospitals Hyderabad India

7. CSIR‐Centre for Cellular and Molecular Biology Hyderabad India

Abstract

AbstractSERPINA11 is a hitherto poorly characterised gene belonging to Clade A of the SERPIN superfamily, with unknown expression pattern and functional significance. We report a perinatal lethal phenotype in two foetuses from the same family associated with a biallelic loss of function variant in SERPINA11, and provide functional evidence to support its candidature as a Mendelian disorder. The SERPINA11 variant‐associated foetal phenotype is characterised by gross and histopathological features of extracellular matrix disruption. Western blot and immunofluorescence analyses revealed SERPINA11 expression in multiple mouse tissues, with pronounced expression in the bronchiolar epithelium. We observed a significant decrease in SERPINA11 immunofluorescence in the affected foetal lung compared with a healthy gestation‐matched foetus. Protein expression data from HEK293T cell lines following site‐directed mutagenesis support the loss of function nature of the variant. Transcriptome analysis from the affected foetal liver indicated the possibility of reduced SERPINA11 transcript abundance. This novel serpinopathy appears to be a consequence of the loss of inhibition of serine proteases involved in extracellular matrix remodelling, revealing SERPINA11 as a protease inhibitor critical for embryonic development.

Funder

Science and Engineering Research Board

Department of Health Research, India

Publisher

Wiley

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