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Biallelic MFSD2Avariants associated with congenital microcephaly, developmental delay, and recognizable neuroimaging features

Authors :
Scala, Marcello
Chua, Geok Lin
Chin, Cheen Fei
Alsaif, Hessa S.
Borovikov, Artem
Riazuddin, Saima
Riazuddin, Sheikh
Chiara Manzini, M.
Severino, Mariasavina
Kuk, Alvin
Fan, Hao
Jamshidi, Yalda
Toosi, Mehran Beiraghi
Doosti, Mohammad
Karimiani, Ehsan Ghayoor
Salpietro, Vincenzo
Dadali, Elena
Baydakova, Galina
Konovalov, Fedor
Lozier, Ekaterina
O’Connor, Emer
Sabr, Yasser
Alfaifi, Abdullah
Ashrafzadeh, Farah
Striano, Pasquale
Zara, Federico
Alkuraya, Fowzan S.
Houlden, Henry
Maroofian, Reza
Silver, David L.
Source :
European Journal of Human Genetics: EJHG; November 2020, Vol. 28 Issue: 11 p1509-1519, 11p
Publication Year :
2020

Abstract

Major Facilitator Superfamily Domain containing 2a (MFSD2A) is an essential endothelial lipid transporter at the blood-brain barrier. Biallelic variants affecting function in MFSD2Acause autosomal recessive primary microcephaly 15 (MCPH15, OMIM# 616486). We sought to expand our knowledge of the phenotypic spectrum of MCPH15 and demonstrate the underlying mechanism of inactivation of the MFSD2A transporter. We carried out detailed analysis of the clinical and neuroradiological features of a series of 27 MCPH15 cases, including eight new individuals from seven unrelated families. Genetic investigation was performed through exome sequencing (ES). Structural insights on the human Mfsd2a model and in-vitro biochemical assays were used to investigate the functional impact of the identified variants. All patients had primary microcephaly and severe developmental delay. Brain MRI showed variable degrees of white matter reduction, ventricular enlargement, callosal hypodysgenesis, and pontine and vermian hypoplasia. ES led to the identification of six novel biallelic MFSD2Avariants (NG_053084.1, NM_032793.5: c.556+1G>A, c.748G>T; p.(Val250Phe), c.750_753del; p.(Cys251SerfsTer3), c.977G>A; p.(Arg326His), c.1386_1435del; p.(Gln462HisfsTer17), and c.1478C>T; p.(Pro493Leu)) and two recurrent variants (NM_032793.5: c.593C>T; p.(Thr198Met) and c.476C>T; p.(Thr159Met)). All these variants and the previously reported NM_032793.5: c.490C>A; p.(Pro164Thr) resulted in either reduced MFSD2A expression and/or transport activity. Our study further delineates the phenotypic spectrum of MCPH15, refining its clinical and neuroradiological characterization and supporting that MFSD2Adeficiency causes early prenatal brain developmental disruption. We also show that poor MFSD2A expression despite normal transporter activity is a relevant pathomechanism in MCPH15.

Details

Language :
English
ISSN :
10184813 and 14765438
Volume :
28
Issue :
11
Database :
Supplemental Index
Journal :
European Journal of Human Genetics: EJHG
Publication Type :
Periodical
Accession number :
ejs53583541
Full Text :
https://doi.org/10.1038/s41431-020-0669-x