Variant ID | 1014 |
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Entrez Gene ID | 9152 |
Gene | SLC6A5 (GeneCards) |
Location | hg19 11:20649612-20649612
hg38 11:20628066-20628066 |
Disease | Human Skin Fibroblasts (view all the variants in this disease) |
Method | HiSeq 2500 |
Mutation(HGVS format) | NC_000011.9:g.20649612 C>T (Genome Assembly: hg19) |
Exon or Intron | Exon |
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Position in protein | 494 |
Amino acid changes in protein | F > F |
Position in cDNA | NA |
Changes in cDNA | NA > NA |
mRNA accession | NA |
mRNA length | NA |
Reference length | 135006516 |
MAF in gnomAD genome (version 2.0.1) | 0 |
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EIGEN score | 1.4215 |
CADD Raw score (version 1.3) | 1.93228 (Deleterious) |
FATHMM raw prediction score | 0.9782 (Tolerated) |
Deleterious probability by DeFine | 0.8838 (Deleterious) |
Entrez Gene ID | 9152 (NCBI Gene) |
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Official Gene Symbol | SLC6A5 (GeneCards) |
Number of variants in SLC6A5 in this database | 3 (view all the variants) |
Full name | solute carrier family 6 member 5 |
Band | 11p15.1 |
Other IDs | Vega: OTTHUMG00000166024 OMIM: 604159 HGNC: HGNC:11051 Ensembl: ENSG00000165970 |
Other names | NET1, GLYT2, HKPX3, GLYT-2 |
Summary | This gene encodes a sodium- and chloride-dependent glycine neurotransmitter transporter. This integral membrane glycoprotein is responsible for the clearance of extracellular glycine during glycine-mediated neurotransmission. This protein is found in glycinergic axons and maintains a high presynaptic pool of neurotransmitter at glycinergic synapses. Mutations in this gene cause hyperekplexia; a heterogenous neurological disorder characterized by exaggerated startle responses and neonatal apnea. Two transcript variants encoding different isoforms have been found for this gene. [provided by RefSeq, Jan 2016] |
Individual ID | 27788131.02 (view all the variants in this individual) |
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Pubmed ID | 27788131 |
Whose mosaic mutation | Normal |
Phenotype | 1 |
Disease | Human Skin Fibroblasts (view all the variants in this disease) |
OMIM ID | 120353 |
Pubmed ID | 27788131 |
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Title | The Impact of Environmental and Endogenous Damage on Somatic Mutation Load in Human Skin Fibroblasts. |
Journal | PLoS Genetics |
Publication date | 2016.10 |
Disease | Human Skin Fibroblasts |
Population | Caucasian |
Number of cases | Male cases: 2; |