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Crystal structure of human insulin-regulated aminopeptidase with specificity for cyclic peptides.


ABSTRACT: Insulin-regulated aminopeptidase (IRAP or oxytocinase) is a membrane-bound zinc-metallopeptidase that cleaves neuroactive peptides in the brain and produces memory enhancing effects when inhibited. We have determined the crystal structure of human IRAP revealing a closed, four domain arrangement with a large, mostly buried cavity abutting the active site. The structure reveals that the GAMEN exopeptidase loop adopts a very different conformation from other aminopeptidases, thus explaining IRAP's unique specificity for cyclic peptides such as oxytocin and vasopressin. Computational docking of a series of IRAP-specific cognitive enhancers into the crystal structure provides a molecular basis for their structure-activity relationships and demonstrates that the structure will be a powerful tool in the development of new classes of cognitive enhancers for treating a variety of memory disorders such as Alzheimer's disease.

SUBMITTER: Hermans SJ 

PROVIDER: S-EPMC4315657 | biostudies-literature | 2015 Feb

REPOSITORIES: biostudies-literature

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Crystal structure of human insulin-regulated aminopeptidase with specificity for cyclic peptides.

Hermans Stefan J SJ   Ascher David B DB   Hancock Nancy C NC   Holien Jessica K JK   Michell Belinda J BJ   Chai Siew Yeen SY   Morton Craig J CJ   Parker Michael W MW  

Protein science : a publication of the Protein Society 20141226 2


Insulin-regulated aminopeptidase (IRAP or oxytocinase) is a membrane-bound zinc-metallopeptidase that cleaves neuroactive peptides in the brain and produces memory enhancing effects when inhibited. We have determined the crystal structure of human IRAP revealing a closed, four domain arrangement with a large, mostly buried cavity abutting the active site. The structure reveals that the GAMEN exopeptidase loop adopts a very different conformation from other aminopeptidases, thus explaining IRAP's  ...[more]

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