Subcellular membrane systems are highly enriched in dolichol, whose role in organelle homeostasis and endosomal-lysosomal pathway remains largely unclear besides being involved in protein glycosylation. DHDDS encodes for the catalytic subunit (DHDDS) of the enzyme cis-prenyltransferase (cis-PTase), involved in dolichol biosynthesis and dolichol-dependent protein glycosylation in the endoplasmic reticulum. An autosomal recessive form of retinitis pigmentosa (retinitis pigmentosa 59) has been associated with a recurrent DHDDS variant. Moreover, two recurring de novo substitutions were detected in a few cases presenting with neurodevelopmental disorder, epilepsy, and movement disorder.
De novo DHDDS variants cause a neurodevelopmental and neurodegenerative disorder with myoclonus / Galosi, S., Edani, B.H., Martinelli, S., Hansikova, H., Eklund, E.A., Caputi, C., Masuelli, L., Corsten-Janssen, N., Srour, M., Oegema, R., Bosch, D.G.M., Ellis, C.A., Amlie-Wolf, L., Accogli, A., Atallah, I., Averdunk, L., Barañano, K.W., Bei, R., Bagnasco, I., Brusco, A., et al.. - In: BRAIN. - ISSN 1460-2156. - ELETTRONICO. - (2021), pp. 0-0. [10.1093/brain/awab299]
De novo DHDDS variants cause a neurodevelopmental and neurodegenerative disorder with myoclonus
Oegema, Renske;Accogli, Andrea;Guerrini, Renzo;
2021
Abstract
Subcellular membrane systems are highly enriched in dolichol, whose role in organelle homeostasis and endosomal-lysosomal pathway remains largely unclear besides being involved in protein glycosylation. DHDDS encodes for the catalytic subunit (DHDDS) of the enzyme cis-prenyltransferase (cis-PTase), involved in dolichol biosynthesis and dolichol-dependent protein glycosylation in the endoplasmic reticulum. An autosomal recessive form of retinitis pigmentosa (retinitis pigmentosa 59) has been associated with a recurrent DHDDS variant. Moreover, two recurring de novo substitutions were detected in a few cases presenting with neurodevelopmental disorder, epilepsy, and movement disorder.| File | Dimensione | Formato | |
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