2002Faculty Opinions – Post-Publication Peer Review of the Biomedical LiteratureOpen access

Faculty Opinions recommendation of The ATP synthase is involved in generating mitochondrial cristae morphology.

Suresh Subramani

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Abstract

The inner membrane of the mitochondrion folds inwards, forming the cristae.This folding allows a greater amount of membrane to be packed into the mitochondrion.The data in this study demonstrate that subunits e and g of the mitochondrial ATP synthase are involved in generating mitochondrial cristae morphology.These two subunits are non-essential components of ATP synthase and are required for the dimerization and oligomerization of ATP synthase.Mitochondria of yeast cells de®cient in either subunits e or g were found to have numerous digitations and onion-like structures that correspond to an uncontrolled biogenesis and/or folding of the inner mitochondrial membrane.The present data show that there is a link between dimerization of the mitochondrial ATP synthase and cristae morphology.A model is proposed of the assembly of ATP synthase dimers, taking into account the oligomerization of the yeast enzyme and earlier data on the ultrastructure of mitochondrial cristae, which suggests that the association of ATP synthase dimers is involved in the control of the biogenesis of the inner mitochondrial membrane.

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The inner membrane of the mitochondrion folds inwards, forming the cristae.This folding allows a greater amount of membrane to be packed into the mitochondrion.The data in this study demonstrate that subunits e and g of the mitochondrial ATP synthase are involved in generating mitochondrial cristae morphology.These two subunits are non-essential components of ATP synthase and are required for the dimerization and oligomerization of ATP synthase.Mitochondria of yeast cells de®cient in either subunits e or g were found to have numerous digitations and onion-like structures that correspond to an uncontrolled biogenesis and/or folding of the inner mitochondrial membrane.The present data show that there is a link between dimerization of the mitochondrial ATP synthase and cristae morphology.A model is proposed of the assembly of ATP synthase dimers, taking into account the oligomerization of the yeast enzyme and earlier data on the ultrastructure of mitochondrial cristae, which suggests that the association of ATP synthase dimers is involved in the control of the biogenesis of the inner mitochondrial membrane.

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Available abstract

The inner membrane of the mitochondrion folds inwards, forming the cristae.This folding allows a greater amount of membrane to be packed into the mitochondrion.The data in this study demonstrate that subunits e and g of the mitochondrial ATP synthase are involved in generating mitochondrial cristae morphology.These two subunits are non-essential components of ATP synthase and are required for the dimerization and oligomerization of ATP synthase.Mitochondria of yeast cells de®cient in either subunits e or g were found to have numerous digitations and onion-like structures that correspond to an uncontrolled biogenesis and/or folding of the inner mitochondrial membrane.The present data show that there is a link between dimerization of the mitochondrial ATP synthase and cristae morphology.A model is proposed of the assembly of ATP synthase dimers, taking into account the oligomerization of the yeast enzyme and earlier data on the ultrastructure of mitochondrial cristae, which suggests that the association of ATP synthase dimers is involved in the control of the biogenesis of the inner mitochondrial membrane.

Key concepts: ATP synthase, Mitochondrion, Biogenesis, V-ATPase, ATP–ADP translocase, Inner mitochondrial membrane, Inner membrane, Cell biology

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