AI Article Synopsis

  • The study focuses on new cases of ACO2-related diseases, caused by genetic mutations in the ACO2 gene, linked to severe neurological and developmental issues.
  • Researchers assessed five patients with different presentations and severity of symptoms, revealing a range from mild symptoms like ataxia and developmental delays to severe conditions like spastic quadriplegia and life-threatening complications.
  • The findings emphasize the need for awareness of milder manifestations of ACO2-related disorders, as they can often be overlooked despite their significant impact on patient health.

Article Abstract

Objective: We describe the clinical characteristics and genetic etiology of several new cases within the ACO2-related disease spectrum. Mitochondrial aconitase (ACO2) is a nuclear-encoded tricarboxylic acid cycle enzyme. Homozygous pathogenic missense variants in the ACO2 gene were initially associated with infantile degeneration of the cerebrum, cerebellum, and retina, resulting in profound intellectual and developmental disability and early death. Subsequent studies have identified a range of homozygous and compound heterozygous pathogenic missense, nonsense, frameshift, and splice-site ACO2 variants in patients with a spectrum of clinical manifestations and disease severities.

Methods: We describe a cohort of five novel patients with biallelic pathogenic variants in ACO2. We review the clinical histories of these patients as well as the molecular and functional characterization of the associated ACO2 variants and compare with those described previously in the literature.

Results: Two siblings with relatively mild symptoms presented with episodic ataxia, mild developmental delays, severe dysarthria, and behavioral abnormalities including hyperactivity and depressive symptoms with generalized anxiety. One patient presented with the classic form with cerebellar hypoplasia, ataxia, seizures, optic atrophy, and retinitis pigmentosa. Another unrelated patient presented with ataxia but developed severe progressive spastic quadriplegia. Another patient demonstrated a spinal muscular atrophy-like presentation with severe neonatal hypotonia, diminished reflexes, and poor respiratory drive, leading to ventilator dependence until death at the age of 9 months.

Interpretation: In this study, we highlight the importance of recognizing milder forms of the disorder, which may escape detection due to atypical disease presentation.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC7318087PMC
http://dx.doi.org/10.1002/acn3.51074DOI Listing

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