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1.
Acta Neuropathol Commun ; 9(1): 43, 2021 03 16.
Article in English | MEDLINE | ID: mdl-33726851

ABSTRACT

SORL1 is strongly associated with both sporadic and familial forms of Alzheimer's disease (AD), but a lack of information about alternatively spliced transcripts currently limits our understanding of the role of SORL1 in AD. Here, we describe a SORL1 transcript (SORL1-38b) characterized by inclusion of a novel exon (E38b) that encodes a truncated protein. We identified E38b-containing transcripts in several brain regions, with the highest expression in the cerebellum and showed that SORL1-38b is largely located in neuronal dendrites, which is in contrast to the somatic distribution of transcripts encoding the full-length SORLA protein (SORL1-fl). SORL1-38b transcript levels were significantly reduced in AD cerebellum in three independent cohorts of postmortem brains, whereas no changes were observed for SORL1-fl. A trend of lower 38b transcript level in cerebellum was found for individuals carrying the risk variant at rs2282649 (known as SNP24), although not reaching statistical significance. These findings suggest synaptic functions for SORL1-38b in the brain, uncovering novel aspects of SORL1 that can be further explored in AD research.


Subject(s)
Alternative Splicing , Alzheimer Disease/genetics , Alzheimer Disease/metabolism , Dendrites/metabolism , LDL-Receptor Related Proteins/genetics , LDL-Receptor Related Proteins/metabolism , Membrane Transport Proteins/genetics , Membrane Transport Proteins/metabolism , Alternative Splicing/genetics , Autopsy , Brain/metabolism , Cerebellum/pathology , Cohort Studies , Dendrites/genetics , Female , Genetic Predisposition to Disease , HEK293 Cells , Humans , LDL-Receptor Related Proteins/analysis , Male , Membrane Transport Proteins/analysis , Neurons/metabolism , Tissue Banks
2.
Mol Neurobiol ; 57(7): 3106-3117, 2020 Jul.
Article in English | MEDLINE | ID: mdl-32472518

ABSTRACT

Sorting protein-related receptor containing LDLR class A repeats (SORLA; also known as LR11) exerts intraneuronal trafficking functions in the central nervous system. Recently, involvement of SORLA in retinogenesis was proposed, but no studies have examined yet in detail the expression pattern of this sorting receptor in the retina. Here, we provide a spatio-temporal characterization of SORL1 mRNA and its translational product SORLA in the postnatal mouse retina. Using stereological analysis, we confirmed previous studies showing that receptor depletion in knockout mice significantly reduces the number of cells in the inner nuclear layer (INL), suggesting that functional SORLA expression is essential for the development of this retinal strata. qPCR and Western blot analyses showed that SORL1/SORLA expression peaks at postnatal day 15, just after eye opening. Interestingly, we found that transcripts are somatically located in several neuronal populations residing in the INL and the ganglion cell layer, whereas SORLA protein is also present in the synaptic plexiform layers. In line with receptor expression in dendritic terminals, we found delayed stratification of the inner plexiform layer in knockout mice, indicating an involvement of SORLA in neuronal connectivity. Altogether, these data suggest a novel role of SORLA in synaptogenesis. Receptor dysfunctions may be implicated in morphological and functional impairments of retinal inner layer formation associated with eye disorders.


Subject(s)
Gene Expression Regulation, Developmental , Membrane Transport Proteins/metabolism , Neurons/metabolism , Receptors, LDL/metabolism , Retina/metabolism , Animals , Membrane Transport Proteins/genetics , Mice , Mice, Knockout , Receptors, LDL/genetics
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