Roderick P P W M Maas1, Jolanda H Schieving2, Meyke Schouten3, Erik-Jan Kamsteeg3, Bart P C van de Warrenburg4. 1. Department of Neurology, Donders Institute for Brain, Cognition and Behaviour, Radboud University Medical Center, Nijmegen, The Netherlands. Electronic address: roderick.maas@radboudumc.nl. 2. Department of Pediatric Neurology, Radboud University Medical Center, Nijmegen, The Netherlands. 3. Department of Human Genetics, Radboud University Medical Center, Nijmegen, The Netherlands. 4. Department of Neurology, Donders Institute for Brain, Cognition and Behaviour, Radboud University Medical Center, Nijmegen, The Netherlands.
Abstract
BACKGROUND: The clinical syndrome of cerebellar ataxia, areflexia, pes cavus, optic atrophy, and sensorineural hearing loss (CAPOS) was first described 20 years ago, but it was only recently that whole exome sequencing unveiled the causative mutation in the ATP1A3 gene. We present four patients from the seventh and eighth family identified worldwide, provide a critical review of all patients published thus far, and speculate about the pathophysiologic processes underlying the acute neurological manifestations. CLINICAL OBSERVATIONS: The individuals presented here experienced one to three paroxysmal, short-lasting episodes in childhood with cerebellar symptoms and signs, hypotonia, ophthalmoparesis, motor weakness, areflexia, and/or lethargy that were consistently associated with febrile illness. An underlying c.2452G>A mutation in the ATP1A3 gene was found in all four individuals. Besides the persisting CAPOS features, other possibly related sequelae included dystonia, myoclonus, and emotional and behavioral changes. After initiation of acetazolamide in two patients, no further episodes occurred. CONCLUSION: Targeted sequencing of the ATP1A3 gene is recommended in children exhibiting paroxysmal, fever-induced ataxia and in adults with a more or less stationary or slowly progressive cerebellar syndrome since childhood accompanied by mixed combinations of areflexia, pes cavus, profound visual impairment, and/or sensorineural hearing loss. Similar to some other types of episodic ataxia, acetazolamide may be considered in patients with CAPOS syndrome to prevent or attenuate bouts of ataxia, but this requires further study.
BACKGROUND: The clinical syndrome of cerebellar ataxia, areflexia, pes cavus, optic atrophy, and sensorineural hearing loss (CAPOS) was first described 20 years ago, but it was only recently that whole exome sequencing unveiled the causative mutation in the ATP1A3 gene. We present four patients from the seventh and eighth family identified worldwide, provide a critical review of all patients published thus far, and speculate about the pathophysiologic processes underlying the acute neurological manifestations. CLINICAL OBSERVATIONS: The individuals presented here experienced one to three paroxysmal, short-lasting episodes in childhood with cerebellar symptoms and signs, hypotonia, ophthalmoparesis, motor weakness, areflexia, and/or lethargy that were consistently associated with febrile illness. An underlying c.2452G>A mutation in the ATP1A3 gene was found in all four individuals. Besides the persisting CAPOS features, other possibly related sequelae included dystonia, myoclonus, and emotional and behavioral changes. After initiation of acetazolamide in two patients, no further episodes occurred. CONCLUSION: Targeted sequencing of the ATP1A3 gene is recommended in children exhibiting paroxysmal, fever-induced ataxia and in adults with a more or less stationary or slowly progressive cerebellar syndrome since childhood accompanied by mixed combinations of areflexia, pes cavus, profound visual impairment, and/or sensorineural hearing loss. Similar to some other types of episodic ataxia, acetazolamide may be considered in patients with CAPOS syndrome to prevent or attenuate bouts of ataxia, but this requires further study.
Authors: Christian P Roenn; Melody Li; Vivien R Schack; Ian C Forster; Rikke Holm; Mads S Toustrup-Jensen; Jens P Andersen; Steven Petrou; Bente Vilsen Journal: J Biol Chem Date: 2018-11-08 Impact factor: 5.157
Authors: Mary E Moya-Mendez; Lyndsay L Madden; Kathryn W Ruckart; Karen M Downes; Jared F Cook; Beverly M Snively; Allison Brashear; Ihtsham U Haq Journal: J Clin Neurosci Date: 2020-10-05 Impact factor: 1.961
Authors: Irene J Chang; Margaret P Adam; Suman Jayadev; Thomas D Bird; Niranjana Natarajan; Ian A Glass Journal: Am J Med Genet A Date: 2017-11-01 Impact factor: 2.802
Authors: Marina P Hommersom; Teije H van Prooije; Maartje Pennings; Meyke I Schouten; Hans van Bokhoven; Erik-Jan Kamsteeg; Bart P C van de Warrenburg Journal: J Neurol Date: 2021-11-22 Impact factor: 6.682
Authors: Hendrik Rosewich; Matthew T Sweney; Suzanne DeBrosse; Kevin Ess; Laurie Ozelius; Eva Andermann; Frederick Andermann; Gene Andrasco; Alice Belgrade; Allison Brashear; Sharon Ciccodicola; Lynn Egan; Alfred L George; Aga Lewelt; Joshua Magelby; Mario Merida; Tara Newcomb; Vicky Platt; Dominic Poncelin; Sandra Reyna; Masayuki Sasaki; Marcio Sotero de Menezes; Kathleen Sweadner; Louis Viollet; Mary Zupanc; Kenneth Silver; Kathryn Swoboda Journal: Neurol Genet Date: 2017-03-02
Authors: Indar K Sharawat; Ananthanarayanan Kasinathan; Renu Suthar; Naveen Sankhyan Journal: Ann Indian Acad Neurol Date: 2020-06-10 Impact factor: 1.383