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Rudolph, I.-M.

Publications and source records attributed to Rudolph, I.-M..

2 recordsLinked to original sources

Familial Alzheimer disease mutation identifies novel role of SORLA in release of neurotrophic exosomes

Sortilin-related receptor with A-type repeats (SORLA) is an intracellular sorting receptor that directs target proteins between endocytic and secretory compartments of cells. Mutations in SORL1, encoding SORLA, are common in individuals suffering from Alzheimer disease (AD) of unknown etiology. Conceptually, characterization of inheritable SORL1 variants associated with AD can provide important new information about functions of this receptor relevant for aging brain health. Here, we focused on elucidation of the AD-associated variant SORLA N1358S, carrying a mutation in the main ligand binding domain of the receptor. Using unbiased quantitative proteome screens, we identified major alterations in the mutant receptor interactome linked to biogenesis and secretion of exosomes. Using advanced biophysical, cell biological, as well as functional studies in stem cell-derived human cell models we corroborated impaired release and loss of neurotrophic action of exosomes from neurons and microglia expressing SORLAN1358S. An impaired neurotrophic potential was attributed to an altered exosomal content of RNA binding proteins and associated microRNAs, known to control neuronal growth and maturation. Our studies identified a so far unknown function for SORLA in controlling the quantity and trophic quality of extracellular vesicles secreted by cells, and they argue for impaired cellular cross talk through exosomes as a pathological trail contributing to the risk of AD seen with carriers of SORL1 variants.

neuroscience↗

Interaction of sortilin with apolipoprotein E3 enables neurons to use long-chain fatty acids as alternative metabolic fuel

Sortilin (SORT1) is a lipoprotein receptor that shows genome-wide association with hypercholesterolemia, explained by its ability to control hepatic output of lipoproteins. Remarkably, SORT1 also shows genome-wide association with Alzheimer disease (AD) and frontotemporal lobe dementia, the most prevalent forms of age-related dementias. Yet, sortilins contribution to human brain lipid metabolism and health remains unclear. Using humanized mouse strains and iPSC-based cell models of brain lipid homeostasis, we document that sortilin mediates neuronal uptake of polyunsaturated fatty acids carried by apoE. Internalized lipids are converted into ligands for PPAR, inducing transcription profiles that enable neurons to use long-chain fatty acids as metabolic fuel. This pathway works with apoE3, but is lost with the AD risk factor apoE4, which disrupts sortilins endocytic activity. We document a role for the lipoprotein receptor sortilin in metabolic fuel choice in neurons, possibly crucial when supply with glucose is limited, as in the aging brain.

neuroscience↗