C subunit of the ATP synthase is an amyloidogenic calcium dependent channel-forming peptide with possible implications in mitochondrial permeability transition
Abstract The c subunit is an inner mitochondrial membrane (IMM) protein encoded by three nuclear genes. Best known as an integral part of the F0 complex of the ATP synthase, the c subunit is also present in other cytoplasmic compartments in ceroid lipofuscinoses. Under physiological conditions, this...
Main Authors: | , , , , , , , , |
---|---|
Format: | Article |
Language: | English |
Published: |
Nature Publishing Group
2021-04-01
|
Series: | Scientific Reports |
Online Access: | https://doi.org/10.1038/s41598-021-88157-z |
id |
doaj-b00333c6b7dd491981fe6f05f6206b8b |
---|---|
record_format |
Article |
spelling |
doaj-b00333c6b7dd491981fe6f05f6206b8b2021-04-25T11:37:13ZengNature Publishing GroupScientific Reports2045-23222021-04-0111111010.1038/s41598-021-88157-zC subunit of the ATP synthase is an amyloidogenic calcium dependent channel-forming peptide with possible implications in mitochondrial permeability transitionGiuseppe Federico Amodeo0Brenda Yasie Lee1Natalya Krilyuk2Carina Teresa Filice3Denis Valyuk4Daniel Erik Otzen5Sergey Noskov6Zoya Leonenko7Evgeny V. Pavlov8Department of Molecular Pathobiology, New York University College of DentistryDepartment of Physics and Astronomy, University of WaterlooDepartment of Molecular Pathobiology, New York University College of DentistryDepartment of Physics and Astronomy, University of WaterlooDepartment of Molecular Pathobiology, New York University College of DentistryInterdisciplinary Nanoscience Center (iNANO) and Department of Molecular Biology and Genetics, Aarhus UniversityCentre for Molecular Simulation and Biochemistry Research Cluster, Department of Biological Sciences, University of CalgaryDepartment of Physics and Astronomy, University of WaterlooDepartment of Molecular Pathobiology, New York University College of DentistryAbstract The c subunit is an inner mitochondrial membrane (IMM) protein encoded by three nuclear genes. Best known as an integral part of the F0 complex of the ATP synthase, the c subunit is also present in other cytoplasmic compartments in ceroid lipofuscinoses. Under physiological conditions, this 75 residue-long peptide folds into an α-helical hairpin and forms oligomers spanning the lipid bilayer. In addition to its physiological role, the c subunit has been proposed as a key participant in stress-induced IMM permeabilization by the mechanism of calcium-induced permeability transition. However, the molecular mechanism of the c subunit participation in IMM permeabilization is not completely understood. Here we used fluorescence spectroscopy, atomic force microscopy and black lipid membrane methods to gain insights into the structural and functional properties of unmodified c subunit protein that might make it relevant to mitochondrial toxicity. We discovered that c subunit is an amyloidogenic peptide that can spontaneously fold into β-sheets and self-assemble into fibrils and oligomers in a Ca2+-dependent manner. C subunit oligomers exhibited ion channel activity in lipid membranes. We propose that the toxic effects of c subunit might be linked to its amyloidogenic properties and are driven by mechanisms similar to those of neurodegenerative polypeptides such as Aβ and α-synuclein.https://doi.org/10.1038/s41598-021-88157-z |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Giuseppe Federico Amodeo Brenda Yasie Lee Natalya Krilyuk Carina Teresa Filice Denis Valyuk Daniel Erik Otzen Sergey Noskov Zoya Leonenko Evgeny V. Pavlov |
spellingShingle |
Giuseppe Federico Amodeo Brenda Yasie Lee Natalya Krilyuk Carina Teresa Filice Denis Valyuk Daniel Erik Otzen Sergey Noskov Zoya Leonenko Evgeny V. Pavlov C subunit of the ATP synthase is an amyloidogenic calcium dependent channel-forming peptide with possible implications in mitochondrial permeability transition Scientific Reports |
author_facet |
Giuseppe Federico Amodeo Brenda Yasie Lee Natalya Krilyuk Carina Teresa Filice Denis Valyuk Daniel Erik Otzen Sergey Noskov Zoya Leonenko Evgeny V. Pavlov |
author_sort |
Giuseppe Federico Amodeo |
title |
C subunit of the ATP synthase is an amyloidogenic calcium dependent channel-forming peptide with possible implications in mitochondrial permeability transition |
title_short |
C subunit of the ATP synthase is an amyloidogenic calcium dependent channel-forming peptide with possible implications in mitochondrial permeability transition |
title_full |
C subunit of the ATP synthase is an amyloidogenic calcium dependent channel-forming peptide with possible implications in mitochondrial permeability transition |
title_fullStr |
C subunit of the ATP synthase is an amyloidogenic calcium dependent channel-forming peptide with possible implications in mitochondrial permeability transition |
title_full_unstemmed |
C subunit of the ATP synthase is an amyloidogenic calcium dependent channel-forming peptide with possible implications in mitochondrial permeability transition |
title_sort |
c subunit of the atp synthase is an amyloidogenic calcium dependent channel-forming peptide with possible implications in mitochondrial permeability transition |
publisher |
Nature Publishing Group |
series |
Scientific Reports |
issn |
2045-2322 |
publishDate |
2021-04-01 |
description |
Abstract The c subunit is an inner mitochondrial membrane (IMM) protein encoded by three nuclear genes. Best known as an integral part of the F0 complex of the ATP synthase, the c subunit is also present in other cytoplasmic compartments in ceroid lipofuscinoses. Under physiological conditions, this 75 residue-long peptide folds into an α-helical hairpin and forms oligomers spanning the lipid bilayer. In addition to its physiological role, the c subunit has been proposed as a key participant in stress-induced IMM permeabilization by the mechanism of calcium-induced permeability transition. However, the molecular mechanism of the c subunit participation in IMM permeabilization is not completely understood. Here we used fluorescence spectroscopy, atomic force microscopy and black lipid membrane methods to gain insights into the structural and functional properties of unmodified c subunit protein that might make it relevant to mitochondrial toxicity. We discovered that c subunit is an amyloidogenic peptide that can spontaneously fold into β-sheets and self-assemble into fibrils and oligomers in a Ca2+-dependent manner. C subunit oligomers exhibited ion channel activity in lipid membranes. We propose that the toxic effects of c subunit might be linked to its amyloidogenic properties and are driven by mechanisms similar to those of neurodegenerative polypeptides such as Aβ and α-synuclein. |
url |
https://doi.org/10.1038/s41598-021-88157-z |
work_keys_str_mv |
AT giuseppefedericoamodeo csubunitoftheatpsynthaseisanamyloidogeniccalciumdependentchannelformingpeptidewithpossibleimplicationsinmitochondrialpermeabilitytransition AT brendayasielee csubunitoftheatpsynthaseisanamyloidogeniccalciumdependentchannelformingpeptidewithpossibleimplicationsinmitochondrialpermeabilitytransition AT natalyakrilyuk csubunitoftheatpsynthaseisanamyloidogeniccalciumdependentchannelformingpeptidewithpossibleimplicationsinmitochondrialpermeabilitytransition AT carinateresafilice csubunitoftheatpsynthaseisanamyloidogeniccalciumdependentchannelformingpeptidewithpossibleimplicationsinmitochondrialpermeabilitytransition AT denisvalyuk csubunitoftheatpsynthaseisanamyloidogeniccalciumdependentchannelformingpeptidewithpossibleimplicationsinmitochondrialpermeabilitytransition AT danielerikotzen csubunitoftheatpsynthaseisanamyloidogeniccalciumdependentchannelformingpeptidewithpossibleimplicationsinmitochondrialpermeabilitytransition AT sergeynoskov csubunitoftheatpsynthaseisanamyloidogeniccalciumdependentchannelformingpeptidewithpossibleimplicationsinmitochondrialpermeabilitytransition AT zoyaleonenko csubunitoftheatpsynthaseisanamyloidogeniccalciumdependentchannelformingpeptidewithpossibleimplicationsinmitochondrialpermeabilitytransition AT evgenyvpavlov csubunitoftheatpsynthaseisanamyloidogeniccalciumdependentchannelformingpeptidewithpossibleimplicationsinmitochondrialpermeabilitytransition |
_version_ |
1721509492418412544 |