Loss of TNR causes a nonprogressive neurodevelopmental disorder with spasticity and transient opisthotonus
Purpose TNR , encoding Tenascin-R, is an extracellular matrix glycoprotein involved in neurite outgrowth and neural cell adhesion, proliferation and migration, axonal guidance, myelination, and synaptic plasticity. Tenascin-R is exclusively expressed in the central nervous system with highest expres...
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Veröffentlicht in: | Genetics in medicine 2020-06, Vol.22 (6), p.1061-1068 |
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Hauptverfasser: | , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , |
Format: | Artikel |
Sprache: | eng |
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Zusammenfassung: | Purpose
TNR
, encoding Tenascin-R, is an extracellular matrix glycoprotein involved in neurite outgrowth and neural cell adhesion, proliferation and migration, axonal guidance, myelination, and synaptic plasticity. Tenascin-R is exclusively expressed in the central nervous system with highest expression after birth. The protein is crucial in the formation of perineuronal nets that ensheath interneurons. However, the role of Tenascin-R in human pathology is largely unknown. We aimed to establish
TNR
as a human disease gene and unravel the associated clinical spectrum.
Methods
Exome sequencing and an online matchmaking tool were used to identify patients with biallelic variants in
TNR
.
Results
We identified 13 individuals from 8 unrelated families with biallelic variants in
TNR
sharing a phenotype consisting of spastic para- or tetraparesis, axial muscular hypotonia, developmental delay, and transient opisthotonus. Four homozygous loss-of-function and four different missense variants were identified.
Conclusion
We establish
TNR
as a disease gene for an autosomal recessive nonprogressive neurodevelopmental disorder with spasticity and transient opisthotonus and highlight the role of central nervous system extracellular matrix proteins in the pathogenicity of spastic disorders. |
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ISSN: | 1098-3600 1530-0366 |
DOI: | 10.1038/s41436-020-0768-7 |