Three-dimensional structure of the γ-secretase complex

Biochemical and Biophysical Research Communications(2006)

Cited 96|Views17
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Abstract
γ-Secretase belongs to an atypical class of aspartic proteases that hydrolyzes peptide bonds within the transmembrane domain of substrates, including amyloid-β precursor protein and Notch. γ-Secretase is comprised of presenilin, nicastrin, APH-1, and PEN-2 which form a large multimeric membrane protein complex, the three-dimensional structure of which is unknown. To gain insight into the structure of this complex enzyme, we purified functional γ-secretase complex reconstituted in Sf9 cells and analyzed it using negative stain electron microscopy and 3D reconstruction techniques. Analysis of 2341 negatively stained particle images resulted in the three-dimensional representation of γ-secretase at a resolution of 48Å. The structure occupies a volume of 560×320×240Å and resembles a flat heart comprised of two oppositely faced, dimpled domains. A low density space containing multiple pores resides between the domains. Some of the dimples in the putative transmembrane region may house the catalytic site. The large dimensions are consistent with the observation that γ-secretase activity resides within a high molecular weight complex.
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Key words
γ-Secretase,Alzheimer’s disease,Amyloid-β peptides,Presenilin,Single-particle analysis,Three-dimensional reconstruction,Negative staining,Electron microscopy
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