Mutations

SORL1 P1844S

Overview

Clinical Phenotype: Alzheimer's Disease
Position: (GRCh38/hg38):Chr11:121614981 C>T
Position: (GRCh37/hg19):Chr11:121485690 C>T
dbSNP ID: rs371644977
Coding/Non-Coding: Coding
DNA Change: Substitution
Expected Protein Consequence: Missense
Codon Change: CCT to TCT
Reference Isoform: SORL1 Isoform 1 (2214 aa)
Genomic Region: Exon 41

Findings

The variant was found in one of 5198 Alzheimer's cases and none of 4491 controls in a dataset from the Alzheimer’s Disease Sequencing Project (ADSP), consisting of subjects of non-Hispanic Caucasian ancestry from whom whole-exome sequencing data were available (Campion et al., 2019).

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

Functional Consequences

Proline-1844 is located at the beginning of the fourth of SORL1’s six 3Fn domains—named for fibronectin, the protein in which homologous domains were first described. SORL1’s 3Fn-cassette mediates receptor dimerization, which facilitates retromer-dependent transport of cargo out of endosomes (Jensen et al., 2023). There is partial conservation of proline at homologous positions within SORL1’s 3Fn domains, where it participates in a turn in the protein backbone. Pathogenic variants were identified at homologous positions in several other proteins: usherin, leading to Usher syndrome 2A (USH2A); cytokine receptor-like factor 1, associated with Crisponi/Cold-induced sweating syndrome 1 (CISS1); the alpha subunit of the interleukin-11 receptor, associated with craniosynostosis and dental anomalies (CRSDA); and the alpha subunit of the interleukin-7 receptor, causing severe combined immunodeficiency (Andersen et al., 2023). Andersen and colleagues predicted that substitutions at this position are highly likely to increase AD risk.

The P1844S variant was predicted to be tolerated by SIFT, neutral by Mutation Taster, and benign by PolyPhen-2 (Campion et al., 2019).

Last Updated: 25 Jul 2023

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References

Paper Citations

  1. . 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.
  2. . 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.
  3. . Dimerization of the Alzheimer's disease pathogenic receptor SORLA regulates its association with retromer. Proc Natl Acad Sci U S A. 2023 Jan 24;120(4):e2212180120. Epub 2023 Jan 18 PubMed.
  4. . Relying on the relationship with known disease-causing variants in homologous proteins to predict pathogenicity of SORL1 variants in Alzheimer's disease. 2023 Feb 27 10.1101/2023.02.27.524103 (version 1) bioRxiv.

Further Reading

No Available Further Reading

Protein Diagram

Primary Papers

  1. . 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.
  2. . Relying on the relationship with known disease-causing variants in homologous proteins to predict pathogenicity of SORL1 variants in Alzheimer's disease. 2023 Feb 27 10.1101/2023.02.27.524103 (version 1) bioRxiv.

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