Active site geometry stabilization of a presenilin homolog by the lipid bilayer promotes intramembrane proteolysis

Author:

Feilen Lukas P1ORCID,Chen Shu-Yu2,Fukumori Akio3,Feederle Regina14ORCID,Zacharias Martin2ORCID,Steiner Harald15ORCID

Affiliation:

1. German Center for Neurodegenerative Diseases

2. Center of Functional Protein Assemblies and Physics Department T38, Technical University of Munich

3. Department of Pharmacotherapeutics II, Osaka Medical and Pharmaceutical University

4. Institute for Diabetes and Obesity, Monoclonal Antibody Core Facility, Helmholtz Munich, German Research Center for Environmental Health

5. Biomedical Center (BMC), Division of Metabolic Biochemistry, Faculty of Medicine

Abstract

Cleavage of membrane proteins in the lipid bilayer by intramembrane proteases is crucial for health and disease. Although different lipid environments can potently modulate their activity, how this is linked to their structural dynamics is unclear. Here, we show that the carboxy-peptidase-like activity of the archaeal intramembrane protease PSH, a homolog of the Alzheimer’s disease-associated presenilin/γ-secretase is impaired in micelles and promoted in a lipid bilayer. Comparative molecular dynamics simulations revealed that important elements for substrate binding such as transmembrane domain 6a of PSH are more labile in micelles and stabilized in the lipid bilayer. Moreover, consistent with an enhanced interaction of PSH with a transition-state analog inhibitor, the bilayer promoted the formation of the enzyme’s catalytic active site geometry. Our data indicate that the lipid environment of an intramembrane protease plays a critical role in structural stabilization and active site arrangement of the enzyme-substrate complex thereby promoting intramembrane proteolysis.

Funder

Deutsche Forschungsgemeinschaft

Publisher

eLife Sciences Publications, Ltd

Subject

General Immunology and Microbiology,General Biochemistry, Genetics and Molecular Biology,General Medicine,General Neuroscience

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