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Mendeliome v1.1511 CCDC88C Rylee Peters reviewed gene: CCDC88C: Rating: AMBER; Mode of pathogenicity: None; Publications: 38173219; Phenotypes: monogenic epilepsy MONDO:0015653, CCDC88C-related; Mode of inheritance: BOTH monoallelic and biallelic (but BIALLELIC mutations cause a more SEVERE disease form), autosomal or pseudoautosomal
Mendeliome v0.7059 CCDC88C Zornitza Stark Phenotypes for gene: CCDC88C were changed from Spinocerebellar ataxia 40, MIM#616053; Hydrocephalus, nonsyndromic, autosomal recessive 236600; Eearly-onset pure hereditary spastic paraplegia to Spinocerebellar ataxia 40, MIM#616053; Hydrocephalus, nonsyndromic, autosomal recessive 236600; Early-onset pure hereditary spastic paraplegia
Mendeliome v0.7058 CCDC88C Zornitza Stark Phenotypes for gene: CCDC88C were changed from Spinocerebellar ataxia 40, MIM#616053; Hydrocephalus, nonsyndromic, autosomal recessive 236600 AR to Spinocerebellar ataxia 40, MIM#616053; Hydrocephalus, nonsyndromic, autosomal recessive 236600; Eearly-onset pure hereditary spastic paraplegia
Mendeliome v0.7057 CCDC88C Zornitza Stark Publications for gene: CCDC88C were set to 23042809; 21031079; 25062847; 30398676
Mendeliome v0.7056 CCDC88C Paul De Fazio changed review comment from: Heterozygous missense variant (gnomad: 1 het) reported in a 48-year-old Sudanese female presented with pure early onset hereditary spastic paraplegia. In contrast to previous reports, she developed neurological symptoms in early childhood and showed neither features of cerebellar ataxia, extrapyramidal signs, nor evidence of intellectual involvement. Functional studies showed the varaint induced JNK hyper-phosphorylation and enhanced apoptosis. 4 unaffected family members did not have the variant.

This phenotype appears to be sufficiently dissimilar to the 2 previously reported SCA families to not constitute a 3rd supporting report in that context.; to: Heterozygous missense variant (gnomad: 1 het) reported in a 48-year-old Sudanese female presented with pure early onset hereditary spastic paraplegia. In contrast to previous reports, she developed neurological symptoms in early childhood and showed neither features of cerebellar ataxia, extrapyramidal signs, nor evidence of intellectual involvement. Functional studies showed the varaint induced JNK hyper-phosphorylation and enhanced apoptosis. 4 unaffected family members did not have the variant.

NB: Rated Amber as this phenotype appears to be sufficiently dissimilar to the 2 previously reported SCA families to not constitute a 3rd supporting report in that context. Gene remains Green for the AR ID phenotype.
Mendeliome v0.7056 CCDC88C Paul De Fazio edited their review of gene: CCDC88C: Changed rating: AMBER; Changed mode of inheritance: MONOALLELIC, autosomal or pseudoautosomal, imprinted status unknown
Mendeliome v0.7056 CCDC88C Paul De Fazio reviewed gene: CCDC88C: Rating: GREEN; Mode of pathogenicity: None; Publications: 33602173; Phenotypes: Eearly-onset pure hereditary spastic paraplegia; Mode of inheritance: None; Current diagnostic: yes
Mendeliome v0.986 CCDC88C Sebastian Lunke Phenotypes for gene: CCDC88C were changed from Spinocerebellar ataxia 40, MIM#616053 to Spinocerebellar ataxia 40, MIM#616053; Hydrocephalus, nonsyndromic, autosomal recessive 236600 AR
Mendeliome v0.985 CCDC88C Sebastian Lunke Publications for gene: CCDC88C were set to 25062847; 30398676
Mendeliome v0.984 CCDC88C Sebastian Lunke Mode of inheritance for gene: CCDC88C was changed from MONOALLELIC, autosomal or pseudoautosomal, NOT imprinted to BOTH monoallelic and biallelic, autosomal or pseudoautosomal
Mendeliome v0.983 CCDC88C Sebastian Lunke Classified gene: CCDC88C as Green List (high evidence)
Mendeliome v0.983 CCDC88C Sebastian Lunke Gene: ccdc88c has been classified as Green List (High Evidence).
Mendeliome v0.982 CCDC88C Sebastian Lunke reviewed gene: CCDC88C: Rating: GREEN; Mode of pathogenicity: None; Publications: 23042809, 21031079, 25062847, 30398676; Phenotypes: Spinocerebellar ataxia 40, MIM#616053, Hydrocephalus, nonsyndromic, autosomal recessive 236600 AR; Mode of inheritance: BOTH monoallelic and biallelic, autosomal or pseudoautosomal; Current diagnostic: yes
Mendeliome v0.439 CCDC88C Zornitza Stark Mode of inheritance for gene: CCDC88C was changed from BIALLELIC, autosomal or pseudoautosomal to MONOALLELIC, autosomal or pseudoautosomal, NOT imprinted
Mendeliome v0.438 CCDC88C Zornitza Stark Marked gene: CCDC88C as ready
Mendeliome v0.438 CCDC88C Zornitza Stark Gene: ccdc88c has been classified as Amber List (Moderate Evidence).
Mendeliome v0.438 CCDC88C Zornitza Stark Phenotypes for gene: CCDC88C were changed from to Spinocerebellar ataxia 40, MIM#616053
Mendeliome v0.437 CCDC88C Zornitza Stark Publications for gene: CCDC88C were set to
Mendeliome v0.436 CCDC88C Zornitza Stark Mode of inheritance for gene: CCDC88C was changed from Unknown to BIALLELIC, autosomal or pseudoautosomal
Mendeliome v0.435 CCDC88C Zornitza Stark Classified gene: CCDC88C as Amber List (moderate evidence)
Mendeliome v0.435 CCDC88C Zornitza Stark Gene: ccdc88c has been classified as Amber List (Moderate Evidence).
Mendeliome v0.434 CCDC88C Zornitza Stark reviewed gene: CCDC88C: Rating: AMBER; Mode of pathogenicity: None; Publications: 25062847, 30398676; Phenotypes: Spinocerebellar ataxia 40, MIM#616053; Mode of inheritance: BIALLELIC, autosomal or pseudoautosomal
Mendeliome v0.0 CCDC88C Zornitza Stark gene: CCDC88C was added
gene: CCDC88C was added to Mendeliome_VCGS. Sources: Expert Review Green,Victorian Clinical Genetics Services
Mode of inheritance for gene: CCDC88C was set to Unknown