The neuron-restricted isoform 3 of the plasma membrane Ca(2+) ATPase plays a major role in the regulation of Ca(2+) homeostasis in the brain, where the precise control of Ca(2+) signaling is a necessity. Several function-affecting genetic mutations in the PMCA3 pump associated to X-linked congenital cerebellar ataxias have indeed been described. Interestingly, the presence of co-occurring mutations in additional genes suggest their synergistic action in generating the neurological phenotype as digenic modulators of the role of PMCA3 in the pathologies. Here we report a novel PMCA3 mutation (G733R substitution) in the catalytic P-domain of the pump in a patient affected by non-progressive ataxia, muscular hypotonia, dysmetria and nystagmus. Biochemical studies of the pump have revealed impaired ability to control cellular Ca(2+) handling both under basal and under stimulated conditions. A combined analysis by homology modeling and molecular dynamics have revealed a role for the mutated residue in maintaining the correct 3D configuration of the local structure of the pump. Mutation analysis in the patient has revealed two additional function-impairing compound heterozygous missense mutations (R123Q and G214S substitution) in phosphomannomutase 2 (PMM2), a protein that catalyzes the isomerization of mannose 6-phosphate to mannose 1-phosphate. These mutations are known to be associated with Type Ia congenital disorder of glycosylation (PMM2-CDG), the most common group of disorders of N-glycosylation. The findings highlight the association of PMCA3 mutations to cerebellar ataxia and strengthen the possibility that PMCAs act as digenic modulators in Ca(2+)-linked pathologies.

A novel PMCA3 mutation in an ataxic patient with hypomorphic phosphomannomutase 2 (PMM2) heterozygote mutations: Biochemical characterization of the pump defect

VALENTE, ENZA MARIA;
2017-01-01

Abstract

The neuron-restricted isoform 3 of the plasma membrane Ca(2+) ATPase plays a major role in the regulation of Ca(2+) homeostasis in the brain, where the precise control of Ca(2+) signaling is a necessity. Several function-affecting genetic mutations in the PMCA3 pump associated to X-linked congenital cerebellar ataxias have indeed been described. Interestingly, the presence of co-occurring mutations in additional genes suggest their synergistic action in generating the neurological phenotype as digenic modulators of the role of PMCA3 in the pathologies. Here we report a novel PMCA3 mutation (G733R substitution) in the catalytic P-domain of the pump in a patient affected by non-progressive ataxia, muscular hypotonia, dysmetria and nystagmus. Biochemical studies of the pump have revealed impaired ability to control cellular Ca(2+) handling both under basal and under stimulated conditions. A combined analysis by homology modeling and molecular dynamics have revealed a role for the mutated residue in maintaining the correct 3D configuration of the local structure of the pump. Mutation analysis in the patient has revealed two additional function-impairing compound heterozygous missense mutations (R123Q and G214S substitution) in phosphomannomutase 2 (PMM2), a protein that catalyzes the isomerization of mannose 6-phosphate to mannose 1-phosphate. These mutations are known to be associated with Type Ia congenital disorder of glycosylation (PMM2-CDG), the most common group of disorders of N-glycosylation. The findings highlight the association of PMCA3 mutations to cerebellar ataxia and strengthen the possibility that PMCAs act as digenic modulators in Ca(2+)-linked pathologies.
2017
Molecular Biology & Genetics considers all aspects of basic and applied genetics, including molecular genetics, prokaryotic and eukaryotic gene expression, mechanisms of mutagenesis, structure, function and regulation of genetic material. Also included are resources concerned with clinical genetics, patterns of inheritance, genetic cause, and screening and treatment of disease. Resources dealing specifically with developmentally regulated gene expression, or with signal transduction pathways that modulate gene expression at the cellular level are excluded and are covered in the Cell and Developmental Biology category.
The Neurology category covers resources concerned with the central and peripheral nervous system including the brain, spinal cord, nerves, and fluids. Coverage includes general and clinical neurology including neurosurgery, neuropsychiatry, neuropsychology, neurophysiology, neuroradiology, neuropediatrics, neuropathology, and neurobiology. Resources on cerebrovascular diseases, movement and spinal disorders, pain, dementia, headache, aphasiology, brain injury, paraplegia, stroke, and acupuncture are also included.
Esperti anonimi
Inglese
Internazionale
1863
12
3303
3312
10
Calcium signaling; Phosphomannomutase 2 mutation; Plasma membrane calcium ATPases; Pump mutation; X-linked cerebellar ataxia
16
info:eu-repo/semantics/article
262
Vicario, Mattia; Calì, Tito; Cieri, Domenico; Vallese, Francesca; Bortolotto, Raissa; Lopreiato, Raffaele; Zonta, Francesco; Nardella, Marta; Micalizz...espandi
1 Contributo su Rivista::1.1 Articolo in rivista
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11571/1194523
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