Back to Search Start Over

Pathogenic Variants in NUP214 Cause "Plugged" Nuclear Pore Channels and Acute Febrile Encephalopathy.

Authors :
Fichtman, Boris
Harel, Tamar
Biran, Nitzan
Zagairy, Fadia
Applegate, Carolyn D.
Salzberg, Yuval
Gilboa, Tal
Salah, Somaya
Shaag, Avraham
Simanovsky, Natalia
Ayoubieh, Houriya
Sobreira, Nara
Punzi, Giuseppe
Pierri, Ciro Leonardo
Hamosh, Ada
Elpeleg, Orly
Harel, Amnon
Edvardson, Simon
Source :
American Journal of Human Genetics. Jul2019, Vol. 105 Issue 1, p48-64. 17p.
Publication Year :
2019

Abstract

We report biallelic missense and frameshift pathogenic variants in the gene encoding human nucleoporin NUP214 causing acute febrile encephalopathy. Clinical symptoms include neurodevelopmental regression, seizures, myoclonic jerks, progressive microcephaly, and cerebellar atrophy. NUP214 and NUP88 protein levels were reduced in primary skin fibroblasts derived from affected individuals, while the total number and density of nuclear pore complexes remained normal. Nuclear transport assays exhibited defects in the classical protein import and mRNA export pathways in affected cells. Direct surface imaging of fibroblast nuclei by scanning electron microscopy revealed a large increase in the presence of central particles (known as "plugs") in the nuclear pore channels of affected cells. This observation suggests that large transport cargoes may be delayed in passage through the nuclear pore channel, affecting its selective barrier function. Exposure of fibroblasts from affected individuals to heat shock resulted in a marked delay in their stress response, followed by a surge in apoptotic cell death. This suggests a mechanistic link between decreased cell survival in cell culture and severe fever-induced brain damage in affected individuals. Our study provides evidence by direct imaging at the single nuclear pore level of functional changes linked to a human disease. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
00029297
Volume :
105
Issue :
1
Database :
Academic Search Index
Journal :
American Journal of Human Genetics
Publication Type :
Academic Journal
Accession number :
137249187
Full Text :
https://doi.org/10.1016/j.ajhg.2019.05.003