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Articles, Neurobiology of Disease

Loss of LR11/SORLA Enhances Early Pathology in a Mouse Model of Amyloidosis: Evidence for a Proximal Role in Alzheimer's Disease

Sara E. Dodson, Olav M. Andersen, Vinit Karmali, Jason J. Fritz, Dongmei Cheng, Junmin Peng, Allan I. Levey, Thomas E. Willnow and James J. Lah
Journal of Neuroscience 26 November 2008, 28 (48) 12877-12886; DOI: https://doi.org/10.1523/JNEUROSCI.4582-08.2008
Sara E. Dodson
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Olav M. Andersen
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Vinit Karmali
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Jason J. Fritz
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Dongmei Cheng
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Junmin Peng
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Allan I. Levey
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Thomas E. Willnow
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James J. Lah
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Abstract

Alzheimer's disease (AD) is the most prevalent form of dementia, resulting in progressive neuronal death and debilitating damage to brain loci that mediate memory and higher cognitive function. While pathogenic genetic mutations have been implicated in ∼2% of AD cases, the proximal events that underlie the common, sporadic form of the disease are incompletely understood. Converging lines of evidence from human neuropathology, basic biology, and genetics have implicated loss of the multifunctional receptor LR11 (also known as SORLA and SORL1) in AD pathogenesis. Cell-based studies suggest that LR11 reduces the formation of β-amyloid (Aβ), the molecule believed to be a primary toxic species in AD. Recently, mutant mice deficient in LR11 were shown to upregulate murine Aβ in mouse brain. In the current study, LR11-deficient mice were crossed with transgenic mice expressing autosomal-dominant human AD genes, presenilin-1 (PS1ΔE9) and amyloid precursor protein (APPswe). Here, we show that LR11 deficiency in this AD mouse model significantly increases Aβ levels and exacerbates early amyloid pathology in brain, causing a forward shift in disease onset that is LR11 gene dose-dependent. Loss of LR11 increases the processing of the APP holo-molecule into α-, β-, and γ-secretase derived metabolites. We propose that LR11 regulates APP processing and Aβ accumulation in vivo and is of proximal importance to the cascade of pathological amyloidosis. The results of the current study support the hypothesis that control of LR11 expression may exert critical effects on Alzheimer's disease susceptibility in humans.

  • LR11
  • SORLA
  • SORL1
  • transgenic mouse
  • β-amyloid
  • Alzheimer's disease
  • APOE
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The Journal of Neuroscience: 28 (48)
Journal of Neuroscience
Vol. 28, Issue 48
26 Nov 2008
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Loss of LR11/SORLA Enhances Early Pathology in a Mouse Model of Amyloidosis: Evidence for a Proximal Role in Alzheimer's Disease
Sara E. Dodson, Olav M. Andersen, Vinit Karmali, Jason J. Fritz, Dongmei Cheng, Junmin Peng, Allan I. Levey, Thomas E. Willnow, James J. Lah
Journal of Neuroscience 26 November 2008, 28 (48) 12877-12886; DOI: 10.1523/JNEUROSCI.4582-08.2008

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Loss of LR11/SORLA Enhances Early Pathology in a Mouse Model of Amyloidosis: Evidence for a Proximal Role in Alzheimer's Disease
Sara E. Dodson, Olav M. Andersen, Vinit Karmali, Jason J. Fritz, Dongmei Cheng, Junmin Peng, Allan I. Levey, Thomas E. Willnow, James J. Lah
Journal of Neuroscience 26 November 2008, 28 (48) 12877-12886; DOI: 10.1523/JNEUROSCI.4582-08.2008
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