Recently, an intronic biallelic (AAGGG)(n) repeat expansion in RFC1 was shown to be a cause of CANVAS and adult-onset ataxia in multiple populations. As the prevalence of the RFC1 repeat expansion in Dutch cases was unknown, we retrospectively tested 9 putative CANVAS cases and two independent cohorts (A and B) of 395 and 222 adult-onset ataxia cases, respectively, using the previously published protocol and, for the first time optical genome mapping to determine the size of the expanded RFC1 repeat. We identified the biallelic (AAGGG)(n) repeat expansion in 5/9 (55%) putative CANVAS patients and in 10/617 (1.6%; cohorts A + B) adult-onset ataxia patients. In addition to the AAGGG repeat motif, we observed a putative GAAGG repeat motif in t...
Objective: We evaluated the prevalence of pathogenic repeat expansions in replication factor C subun...
Repeat expansion disorders are caused by repetition of a small stretch of DNA at specific loci, and ...
Background: A biallelic intronic AAGGG repeat expansion in the Replication Factor C subunit 1 (RFC1)...
Recently, an intronic biallelic (AAGGG)(n) repeat expansion in RFC1 was shown to be a cause of CANVA...
Cerebellar ataxia, neuropathy and vestibular areflexia syndrome (CANVAS) is a progressive late-onset...
OBJECTIVE: Cerebellar ataxia with neuropathy and vestibular areflexia syndrome (CANVAS) is a recessi...
Spinocerebellar ataxias (SCAs) are a group of genetic disorders that cause loss of balance, changes ...
Late-onset ataxia is common, often idiopathic, and can result from cerebellar, proprioceptive, or ve...
Genomic technologies such as next-generation sequencing (NGS) are revolutionizing molecular diagnost...
The ataxias are a group of disorders that manifest with balance, movement, speech and visual problem...
Recently, the expansion of an intronic AAGGG repeat in the replication factor C subunit 1 (RFC1) gen...
This article presents the case of a 74-year-old female patient who first developed a progressive dis...
A homozygous AAGGG repeat expansion within the RFC1 gene was recently described as a common cause of...
OBJECTIVES: Cerebellar ataxia with neuropathy and bilateral vestibular areflexia syndrome (CANVAS) r...
OBJECTIVE: To delineate the full phenotypic spectrum, discriminative features, piloting longitudinal...
Objective: We evaluated the prevalence of pathogenic repeat expansions in replication factor C subun...
Repeat expansion disorders are caused by repetition of a small stretch of DNA at specific loci, and ...
Background: A biallelic intronic AAGGG repeat expansion in the Replication Factor C subunit 1 (RFC1)...
Recently, an intronic biallelic (AAGGG)(n) repeat expansion in RFC1 was shown to be a cause of CANVA...
Cerebellar ataxia, neuropathy and vestibular areflexia syndrome (CANVAS) is a progressive late-onset...
OBJECTIVE: Cerebellar ataxia with neuropathy and vestibular areflexia syndrome (CANVAS) is a recessi...
Spinocerebellar ataxias (SCAs) are a group of genetic disorders that cause loss of balance, changes ...
Late-onset ataxia is common, often idiopathic, and can result from cerebellar, proprioceptive, or ve...
Genomic technologies such as next-generation sequencing (NGS) are revolutionizing molecular diagnost...
The ataxias are a group of disorders that manifest with balance, movement, speech and visual problem...
Recently, the expansion of an intronic AAGGG repeat in the replication factor C subunit 1 (RFC1) gen...
This article presents the case of a 74-year-old female patient who first developed a progressive dis...
A homozygous AAGGG repeat expansion within the RFC1 gene was recently described as a common cause of...
OBJECTIVES: Cerebellar ataxia with neuropathy and bilateral vestibular areflexia syndrome (CANVAS) r...
OBJECTIVE: To delineate the full phenotypic spectrum, discriminative features, piloting longitudinal...
Objective: We evaluated the prevalence of pathogenic repeat expansions in replication factor C subun...
Repeat expansion disorders are caused by repetition of a small stretch of DNA at specific loci, and ...
Background: A biallelic intronic AAGGG repeat expansion in the Replication Factor C subunit 1 (RFC1)...