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Updated: Aug 6, 2025

Targeted Next-generation Sequencing and Bioinformatics Pipeline to Evaluate Genetic Determinants of Constitutional Disease
Published on: April 4, 2018
A homozygous POLR1A variant causes leukodystrophy and affects protein homeostasis
Doriana Misceo1, Lisa Lirussi2,3, Petter Strømme4
1Department of Medical Genetics, Oslo University Hospital and University of Oslo, 0450 Oslo, Norway.
Abstract:
RNA polymerase I transcribes ribosomal DNA to produce precursor 47S rRNA. Post-transcriptional processing of this rRNA generates mature 28S, 18S and 5.8S rRNAs, which form the ribosomes, together with 5S rRNA, assembly factors and ribosomal proteins. We previously reported a homozygous variant in the catalytic subunit of RNA polymerase I, POLR1A, in two brothers with leukodystrophy and progressive course. However, the disease mechanism remained unknown. In this report, we describe another missense variant POLR1A NM_015425.3:c.1925C>A; p.(Thr642Asn) in homozygosity in two unrelated patients. Patient 1 was a 16-year-old male and Patient 2 was a 2-year-old female. Both patients manifested neurological deficits, with brain MRIs showing hypomyelinating leukodystrophy and cerebellar atrophy; and in Patient 1 additionally with hypointensity of globi pallidi and small volume of the basal ganglia. Patient 1 had progressive disease course, leading to death at the age of 16.5 years. Extensive in vitro experiments in fibroblasts from Patient 1 documented that the mutated POLR1A led to aberrant rRNA processing and degradation, and abnormal nucleolar homeostasis. Proteomics data analyses and further in vitro experiments documented abnormal protein homeostasis, and endoplasmic reticulum stress responses. We confirm that POLR1A biallelic variants cause neurodegenerative disease, expand the knowledge of the clinical phenotype of the disorder, and provide evidence for possible pathological mechanisms leading to POLR1A-related leukodystrophy.
Insights
Biallelic variants in POLR1A cause a neurodegenerative leukodystrophy. This study identifies a new variant and reveals mechanisms involving aberrant rRNA processing and cellular stress.
Area of Science:
- Genetics
- Molecular Biology
- Neuroscience
Background:
- RNA polymerase I (POLR1A) is crucial for ribosomal RNA (rRNA) synthesis.
- Previous studies linked POLR1A variants to leukodystrophy, but the disease mechanism was unclear.
Observation:
- Two unrelated patients with a novel homozygous POLR1A missense variant (p.(Thr642Asn)) presented with neurological deficits and hypomyelinating leukodystrophy.
- Patient 1 exhibited progressive disease, cerebellar atrophy, and basal ganglia abnormalities, leading to death at 16.5 years.
Findings:
- In vitro studies demonstrated that the mutated POLR1A impairs rRNA processing and nucleolar homeostasis.
- The variant also induced abnormal protein homeostasis and endoplasmic reticulum stress responses.
Implications:
- This research confirms POLR1A biallelic variants as a cause of neurodegenerative disease.
- It expands the clinical understanding of POLR1A-related leukodystrophy and elucidates potential pathological pathways.
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