Presenilin (PSEN) 1 and 2 are the catalytic components
of the γ-secretase complex, which cleaves a variety of proteins,
including the amyloid precursor protein (APP). Proteolysis of APP leads to the formation of the APP intracellular domain (AICD) and amyloid
β that is crucially involved in the pathogenesis of Alzheimer's
disease. Prolyl-4-hydroxylase-domain (PHD) proteins regulate the
hypoxia-inducible factors (HIFs), the master regulators of the hypoxic
response. We previously identified the FK506 binding protein 38 (FKBP38)
as a negative regulator of PHD2. Genetic ablation of PSEN1/2 has been
shown to increase FKBP38 protein levels. Therefore, we investigated the
role of PSEN1/2 in the oxygen sensing pathway using a variety of
genetically modified cell and mouse lines. Increased FKBP38 protein
levels and decreased PHD2 protein levels were found in PSEN1/2-deficient
mouse embryonic fibroblasts and in the cortex of forebrain-specific
PSEN1/2 conditional double knock-out mice. Hypoxic HIF-1α protein
accumulation and transcriptional activity were decreased, despite
reduced PHD2 protein levels. Proteolytic γ-secretase function of PSEN1/2
was needed for proper HIF activation. Intriguingly, PSEN1/2 mutations
identified in Alzheimer patients differentially affected the hypoxic
response, involving the generation of AICD. Together, our results
suggest a direct role for PSEN in the regulation of the oxygen sensing
pathway via the APP/AICD cleavage cascade.
Amyloid beta (Aβ or Abeta) is a peptide of 36–43 amino acids that is processed from the Amyloid precursor protein. While best known as a component of amyloid plaques in association with Alzheimer's disease, evidence has been found that Aβ is a highly multifunctional peptide with significant non-pathological activity.[1] Aβ is the main component of deposits found in the brains of patients with Alzheimer's disease
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The secret of Eta Black by Ananya Sharma
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