Purpose: Pathogenic variants in STUB1 were initially described in autosomal recessive spinocerebellar ataxia type 16 and dominant cerebellar ataxia with cerebellar cognitive dysfunction (SCA48). Methods: We analyzed a large series of 440 index cerebellar ataxia cases, mostly with dominant inheritance. Results: STUB1 variants were detected in 50 patients. Age at onset and severity were remarkably variable. Cognitive impairment, predominantly frontal syndrome, was observed in 54% of STUB1 variant carriers, including five families with Huntington or frontotemporal dementia disease–like phenotypes associated with ataxia, while no STUB1 variant was found in 115 patients with frontotemporal dementia. We report neuropathological findings of a STUB...
Background: CHIP, the protein encoded by STUB1, is a central component of cellular protein homeostas...
Variants in STUB1 cause both autosomal recessive (SCAR16) and dominant (SCA48) spinocerebellar ataxi...
Hereditary cerebellar ataxias (HCA) and spastic paraplegias constitute both ends of the neurodegener...
Purpose: Pathogenic variants in STUB1 were initially described in autosomal recessive spinocerebella...
Background and purpose: Heterozygous mutations in the STUB1 gene have recently been associated with ...
International audienceBackground: STUB1 has been first associated with autosomal recessive (SCAR16, ...
Objective: To describe the clinical and pathologic features of a novel pedigree with heterozygous ST...
[[abstract]]BACKGROUND: Heterozygous pathogenic variants in STUB1 are implicated in autosomal domina...
Introduction: Spinocerebellar ataxia 48 has recently been described as an adult onset ataxia associa...
A Correction to this paper has been published: https://doi.org/10.1038/s41436-020-01064-yFunctional ...
Variants in STUB1 cause both autosomal recessive (SCAR16) and dominant (SCA48) spinocerebellar ataxi...
Biallelic mutations in STUB1, which encodes the E3 ubiquitin ligase CHIP, were originally described ...
Background A subset of hereditary cerebellar ataxias is inherited as autosomal reces...
BACKGROUND: Spinocerebellar ataxia type 17 is an autosomal dominant cerebellar ataxia caused by a CA...
Background: CHIP, the protein encoded by STUB1, is a central component of cellular protein homeostas...
Variants in STUB1 cause both autosomal recessive (SCAR16) and dominant (SCA48) spinocerebellar ataxi...
Hereditary cerebellar ataxias (HCA) and spastic paraplegias constitute both ends of the neurodegener...
Purpose: Pathogenic variants in STUB1 were initially described in autosomal recessive spinocerebella...
Background and purpose: Heterozygous mutations in the STUB1 gene have recently been associated with ...
International audienceBackground: STUB1 has been first associated with autosomal recessive (SCAR16, ...
Objective: To describe the clinical and pathologic features of a novel pedigree with heterozygous ST...
[[abstract]]BACKGROUND: Heterozygous pathogenic variants in STUB1 are implicated in autosomal domina...
Introduction: Spinocerebellar ataxia 48 has recently been described as an adult onset ataxia associa...
A Correction to this paper has been published: https://doi.org/10.1038/s41436-020-01064-yFunctional ...
Variants in STUB1 cause both autosomal recessive (SCAR16) and dominant (SCA48) spinocerebellar ataxi...
Biallelic mutations in STUB1, which encodes the E3 ubiquitin ligase CHIP, were originally described ...
Background A subset of hereditary cerebellar ataxias is inherited as autosomal reces...
BACKGROUND: Spinocerebellar ataxia type 17 is an autosomal dominant cerebellar ataxia caused by a CA...
Background: CHIP, the protein encoded by STUB1, is a central component of cellular protein homeostas...
Variants in STUB1 cause both autosomal recessive (SCAR16) and dominant (SCA48) spinocerebellar ataxi...
Hereditary cerebellar ataxias (HCA) and spastic paraplegias constitute both ends of the neurodegener...