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SORLA facilitates insulin receptor signaling in adipocytes and exacerbates obesity
Vanessa Schmidt, Nadja Schulz, Xin Yan, Annette Schürmann, Stefan Kempa, Matthias Kern, Matthias Blüher, Matthew N. Poy, Gunilla Olivecrona, Thomas E. Willnow
Vanessa Schmidt, Nadja Schulz, Xin Yan, Annette Schürmann, Stefan Kempa, Matthias Kern, Matthias Blüher, Matthew N. Poy, Gunilla Olivecrona, Thomas E. Willnow
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Research Article Metabolism

SORLA facilitates insulin receptor signaling in adipocytes and exacerbates obesity

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Abstract

In humans, genetic variation of sortilin-related receptor, L(DLR class) A repeats containing (SORL1), which encodes the intracellular sorting receptor SORLA, is a major genetic risk factor for familial and sporadic forms of Alzheimer’s disease. Recent GWAS analysis has also associated SORL1 with obesity in humans and in mouse models, suggesting that this receptor may play a role in regulating metabolism. Here, using mouse models with genetic loss or tissue-specific overexpression of SORLA as well as data from obese human subjects, we observed a gene-dosage effect that links SORLA expression to obesity and glucose tolerance. Overexpression of human SORLA in murine adipose tissue blocked hydrolysis of triacylglycerides and caused excessive adiposity. In contrast, Sorl1 gene inactivation in mice accelerated breakdown of triacylglycerides in adipocytes and protected animals from diet-induced obesity. We then identified the underlying molecular mechanism whereby SORLA promotes insulin-induced suppression of lipolysis in adipocytes. Specifically, we determined that SORLA acts as a sorting factor for the insulin receptor (IR) that redirects internalized receptor molecules from endosomes to the plasma membrane, thereby enhancing IR surface expression and strengthening insulin signal reception in target cells. Our findings provide a molecular mechanism for the association of SORL1 with human obesity and confirm a genetic link between neurodegeneration and metabolism that converges on the receptor SORLA.

Authors

Vanessa Schmidt, Nadja Schulz, Xin Yan, Annette Schürmann, Stefan Kempa, Matthias Kern, Matthias Blüher, Matthew N. Poy, Gunilla Olivecrona, Thomas E. Willnow

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Figure 8

SORLA enhances IR signaling and lipid accumulation in CHO cells.

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SORLA enhances IR signaling and lipid accumulation in CHO cells.
(A and ...
(A and B) Oil red O staining of parental CHO cells and CHO-S cells. Cells grown in normal medium (A) or in medium containing 100 μM oleic acid (B). Accumulation of intracellular lipid droplets (red) is more pronounced in CHO-S as compared with CHO cells under both conditions. Original magnification, ×40. (C) Lipase activity in CHO and CHO-S cells expressed as percentage of signal increase at OD400nm over time. Lipolytic activity is significantly lower in CHO-S as compared with CHO cells. n = 10. P < 0.05 for genotypes; P < 0.05 for interaction, matched 2-way ANOVA. (D and E) Densitometric scanning of replicate Western blots (as exemplified in D) documents significantly increased levels of PDE3β and decreased levels of cAMP-Cα in CHO-S as compared with CHO cells. n = 6–11. *P < 0.05; ***P < 0.001, unpaired Student’s t test. (F) Lipase activity in CHO and CHO-S cells treated with 10 μg/ml insulin for 15 minutes (expressed as percentage increase at OD400nm). The enzyme activity is significantly lower in CHO-S as compared with CHO cells. n = 10. P < 0.001 for genotypes; P < 0.001 for interaction, matched 2-way ANOVA. (G and H) CHO and CHO-S cells were treated with control medium or with medium containing 10 μg/ml insulin for 15 minutes and the amount of cAMP-Cα in cell extracts determined by Western blotting thereafter. Representative Western blots are shown in G. The results of densitometric scanning of replicate blots are given in H. CHO-S cells respond to insulin treatment with decreased levels of cAMP-Cα, whereas CHO cells lacking SORLA do not respond to insulin stimulation. n = 6. **P < 0.01, unpaired Student’s t test.

Copyright © 2026 American Society for Clinical Investigation
ISSN: 0021-9738 (print), 1558-8238 (online)

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