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De Novo Heterozygous POLR2A Variants Cause a Neurodevelopmental Syndrome with Profound Infantile-Onset Hypotonia
- Source :
- American Journal of Human Genetics, 105, 283-301, American Journal of Human Genetics, 105, 2, pp. 283-301, American Journal of Human Genetics, 105(2), 283-301. Cell Press, American Journal of Human Genetics, 105(2), 283. Cell Press, Haijes, H A, Koster, M J E, Rehmann, H, Li, D, Hakonarson, H, Cappuccio, G, Hancarova, M, Lehalle, D, Reardon, W, Schaefer, G B, Lehman, A, van de Laar, I M B H, Tesselaar, C D, Turner, C, Goldenberg, A, Patrier, S, Thevenon, J, Pinelli, M, Brunetti-Pierri, N, Prchalová, D, Havlovicová, M, Vlckova, M, Sedláček, Z, Lopez, E, Ragoussis, V, Pagnamenta, A T, Kini, U, Vos, H R, van Es, R M, van Schaik, R F M A, van Essen, T A J, Kibaek, M, Taylor, J C, Sullivan, J, Shashi, V, Petrovski, S, Fagerberg, C, Martin, D M, van Gassen, K L I, Pfundt, R, Falk, M J, McCormick, E M, Timmers, H T M & van Hasselt, P M 2019, ' De Novo Heterozygous POLR2A Variants Cause a Neurodevelopmental Syndrome with Profound Infantile-Onset Hypotonia ', American Journal of Human Genetics, vol. 105, no. 2, pp. 283-301 . https://doi.org/10.1016/j.ajhg.2019.06.016, American Journal of Human Genetics, 105(2), 283-301. CELL PRESS
- Publication Year :
- 2019
-
Abstract
- The RNA polymerase II complex (pol II) is responsible for transcription of all similar to 21,000 human protein-encoding genes. Here, we describe sixteen individuals harboring de novo heterozygous variants in POLR2A, encoding RPB1, the largest subunit of pol II. An iterative approach combining structural evaluation and mass spectrometry analyses, the use of S. cerevisiae as a model system, and the assessment of cell viability in HeLa cells allowed us to classify eleven variants as probably disease-causing and four variants as possibly disease-causing. The significance of one variant remains unresolved. By quantification of phenotypic severity, we could distinguish mild and severe phenotypic consequences of the disease-causing variants. Missense variants expected to exert only mild structural effects led to a malfunctioning pol II enzyme, thereby inducing a dominant-negative effect on gene transcription. Intriguingly, individuals carrying these variants presented with a severe phenotype dominated by profound infantile-onset hypotonia and developmental delay. Conversely, individuals carrying variants expected to result in complete loss of function, thus reduced levels of functional pol II from the normal allele, exhibited the mildest phenotypes. We conclude that subtle variants that are central in functionally important domains of POLR2A cause a neurodevelopmental syndrome characterized by profound infantile-onset hypotonia and developmental delay through a dominant-negative effect on pol-II-mediated transcription of DNA.
- Subjects :
- Male
Muscle Hypotonia
POLR2A
PROTEIN
RNA polymerase II
ELONGATION COMPLEX
INITIATION
0302 clinical medicine
infantile-onset hypotonia
Transcription (biology)
PROGRAM
Missense mutation
Genetics(clinical)
TRANSCRIPTION
Age of Onset
Child
MUTATION
de novo variants
Genetics (clinical)
RNA polymerase II complex
Genetics
0303 health sciences
haplo-insufficiency
DNA-Directed RNA Polymerases
dominant-negative effect
Hypotonia
Phenotype
Child, Preschool
Female
medicine.symptom
LARGEST SUBUNIT
STRUCTURAL BASIS
Heterozygote
Adolescent
RNA-POLYMERASE-II
Saccharomyces cerevisiae
Biology
Article
RPB1
03 medical and health sciences
All institutes and research themes of the Radboud University Medical Center
desert Z score
medicine
Humans
CELL-CYCLE
Allele
Gene
030304 developmental biology
Neurodevelopmental disorders Donders Center for Medical Neuroscience [Radboudumc 7]
neurodevelopmental syndrome
Neurodevelopmental Disorders
biology.protein
desert regions
de novo variant
desert region
030217 neurology & neurosurgery
HeLa Cells
Subjects
Details
- ISSN :
- 00029297
- Database :
- OpenAIRE
- Journal :
- American Journal of Human Genetics, 105, 283-301, American Journal of Human Genetics, 105, 2, pp. 283-301, American Journal of Human Genetics, 105(2), 283-301. Cell Press, American Journal of Human Genetics, 105(2), 283. Cell Press, Haijes, H A, Koster, M J E, Rehmann, H, Li, D, Hakonarson, H, Cappuccio, G, Hancarova, M, Lehalle, D, Reardon, W, Schaefer, G B, Lehman, A, van de Laar, I M B H, Tesselaar, C D, Turner, C, Goldenberg, A, Patrier, S, Thevenon, J, Pinelli, M, Brunetti-Pierri, N, Prchalová, D, Havlovicová, M, Vlckova, M, Sedláček, Z, Lopez, E, Ragoussis, V, Pagnamenta, A T, Kini, U, Vos, H R, van Es, R M, van Schaik, R F M A, van Essen, T A J, Kibaek, M, Taylor, J C, Sullivan, J, Shashi, V, Petrovski, S, Fagerberg, C, Martin, D M, van Gassen, K L I, Pfundt, R, Falk, M J, McCormick, E M, Timmers, H T M & van Hasselt, P M 2019, ' De Novo Heterozygous POLR2A Variants Cause a Neurodevelopmental Syndrome with Profound Infantile-Onset Hypotonia ', American Journal of Human Genetics, vol. 105, no. 2, pp. 283-301 . https://doi.org/10.1016/j.ajhg.2019.06.016, American Journal of Human Genetics, 105(2), 283-301. CELL PRESS
- Accession number :
- edsair.doi.dedup.....a0f4cd55fa3c8a36c6f53d61e8bd024f