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Functional overexpression of gamma-secretase reveals protease-independent trafficking functions and a critical role of lipids for protease activity. | LitMetric

AI Article Synopsis

  • Presenilins are essential components of gamma-secretase, needing other proteins like nicastrin and others for proper function, and their overexpression leads to increased enzyme activity and complex assembly.
  • The enzyme complex is found in the Golgi compartment and its trafficking is influenced by its assembly, while gamma-secretase also affects the movement of the beta-amyloid precursor protein, which isn't altered by inhibition.
  • A study using size exclusion chromatography revealed that the active gamma-secretase complex may exist as a tetramer, but activity can be restored with specific lower molecular mass components or brain lipids, highlighting the importance of lipids in maintaining enzyme function.

Article Abstract

Presenilins appear to form the active center of gamma-secretase but require the presence of the integral membrane proteins nicastrin, anterior pharynx defective 1, and presenilin enhancer 2 for catalytic function. We have simultaneously overexpressed all of these polypeptides, and we demonstrate functional assembly of the enzyme complex, a substantial increase in enzyme activity, and binding of all components to a transition state analogue gamma-secretase inhibitor. Co-localization of all components can be observed in the Golgi compartment, and further trafficking of the individual constituents seems to be dependent on functional assembly. Apart from its catalytic function, gamma-secretase appears to play a role in the trafficking of the beta-amyloid precursor protein, which was changed upon reconstitution of the enzyme but unaffected by pharmacological inhibition. Because the relative molecular mass and stoichiometry of the active enzyme complex remain elusive, we performed size exclusion chromatography of solubilized gamma-secretase, which yielded evidence of a tetrameric form of the complex, yet almost completely abolished enzyme activity. Gamma-secretase activity was reconstituted upon addition of an independent size exclusion chromatography fraction of lower molecular mass and nonproteinaceous nature, which could be replaced by a brain lipid extract. The same treatment was able to restore enzyme activity after immunoaffinity purification of the gamma-secretase complex, demonstrating that lipids play a key role in preserving the catalytic activity of this protease. Furthermore, these data show that it is important to discriminate between intact, inactive gamma-secretase complexes and the active form of the enzyme, indicating the care that must be taken in the study of gamma-secretase.

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Source
http://dx.doi.org/10.1074/jbc.M413086200DOI Listing

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