Mutations

SORL1 R639Q

Overview

Clinical Phenotype: Alzheimer's Disease
Position: (GRCh38/hg38):Chr11:121545294 G>A
Position: (GRCh37/hg19):Chr11:121416003 G>A
dbSNP ID: rs200869993
Coding/Non-Coding: Coding
DNA Change: Substitution
Expected Protein Consequence: Missense
Codon Change: CGG to CAG
Reference Isoform: SORL1 Isoform 1 (2214 aa)
Genomic Region: Exon 14

Findings

In a study that included 15,808 Alzheimer’s cases and 16,097 control subjects from multiple European and American cohorts, this allele was observed once among the AD cases (Holstege et al., 2022).

Previously, in a cohort of 1255 European Alzheimer’s cases and 1938 controls from the European Early Onset Dementia Consortium, a Portuguese control subject was found to be a heterozygous carrier of this variant (Verheijen et al., 2016).

Another carrier—a patient with late-onset AD—was found in a French data set of 927 late-onset AD cases, 852 early onset cases, and 127 controls from the Alzheimer Disease Exome Sequencing France (ADESFR) project (Campion et al., 2019). ADESFR contributed to the 2022 study cited above.

The variant was not seen in a Dutch sample of 640 cases and 1268 controls (Holstege et al., 2017), a sample of 5198 AD cases and 4491 controls of non-Hispanic Caucasian ancestry from the Alzheimer’s Disease Sequencing Project (ADSP) from whom whole-exome sequencing data were available (Campion et al., 2019), or a data set of 332 cases and 676 controls from North America and the United Kingdom (Campion et al., 2019; cohort described by Sassi et al., 2016). The ADSP and the cohorts comprising the Dutch sample also contributed to the 2022 study.

The R639Q variant is classified as likely benign by the criteria of Holstege et al. (Holstege et al., 2017).

Functional Consequences

The arginine-to-glutamine substitution was predicted to be tolerated by SIFT, disease-causing by Mutation Taster, and probably damaging by PolyPhen-2 (Verheijen et al., 2016).

Last Updated: 18 Jul 2024

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References

Paper Citations

  1. . Exome sequencing identifies rare damaging variants in ATP8B4 and ABCA1 as risk factors for Alzheimer's disease. Nat Genet. 2022 Dec;54(12):1786-1794. Epub 2022 Nov 21 PubMed.
  2. . A comprehensive study of the genetic impact of rare variants in SORL1 in European early-onset Alzheimer's disease. Acta Neuropathol. 2016 Aug;132(2):213-24. Epub 2016 Mar 30 PubMed.
  3. . SORL1 genetic variants and Alzheimer disease risk: a literature review and meta-analysis of sequencing data. Acta Neuropathol. 2019 Aug;138(2):173-186. Epub 2019 Mar 25 PubMed.
  4. . Characterization of pathogenic SORL1 genetic variants for association with Alzheimer's disease: a clinical interpretation strategy. Eur J Hum Genet. 2017 Aug;25(8):973-981. Epub 2017 May 24 PubMed.
  5. . Influence of Coding Variability in APP-Aβ Metabolism Genes in Sporadic Alzheimer's Disease. PLoS One. 2016;11(6):e0150079. Epub 2016 Jun 1 PubMed.

Further Reading

No Available Further Reading

Protein Diagram

Primary Papers

  1. . A comprehensive study of the genetic impact of rare variants in SORL1 in European early-onset Alzheimer's disease. Acta Neuropathol. 2016 Aug;132(2):213-24. Epub 2016 Mar 30 PubMed.

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