AI Article Synopsis

  • Insulin degrading enzyme (IDE) is found in the brain and helps break down amyloid beta peptide (Abeta), which is linked to Alzheimer’s disease.
  • Human cerebrovascular endothelial cells (HCECs), essential for the blood-brain barrier, increase IDE expression when exposed to low levels of Abeta, and they quickly degrade radiolabeled Abeta into smaller pieces.
  • This degradation mainly occurs on the outer side of the cell and is significantly influenced by the presence of insulin, indicating that IDE could be a potential target for therapies aimed at reducing Abeta levels in the brain.

Article Abstract

Insulin degrading enzyme (IDE) is expressed in the brain and may play an important role there in the degradation of the amyloid beta peptide (Abeta). Our results show that cultured human cerebrovascular endothelial cells (HCECs), a primary component of the blood-brain barrier, express IDE and may respond to exposure to low levels of Abeta by upregulating its expression. When radiolabeled Abeta is introduced to the medium of cultured HCECs, it is rapidly degraded to smaller fragments. We believe that this degradation is largely the result of the action of IDE, as it can be substantially blocked by the presence of insulin in the medium, a competitive substrate of IDE. No inhibition is seen when an inhibitor of neprilysin, another protease that may degrade Abeta, is present in the medium. Our evidence suggests that the action of IDE occurs outside the cell, as inhibitors of internalization fail to affect the rate of the observed degradation. Further, our evidence suggests that degradation by IDE occurs on the plasma membrane, as much of the IDE present in HCECs was biotin-labeled by a plasma membrane impermeable reagent. This activity seems to be polarity dependent, as measurement of Abeta degradation by each surface of differentiated HCECs shows greater degradation on the basolateral (brain-facing) surface. Thus, IDE could be an important therapeutic target to decrease the amount of Abeta in the cerebrovasculature.

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Source
http://dx.doi.org/10.1002/jnr.20809DOI Listing

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