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February 15, 2008Genes & Development540 citationsOpen Access

Prohibitins control cell proliferation and apoptosis by regulating OPA1-dependent cristae morphogenesis in mitochondria

CMCarsten MerkwirthSDSascha DargazanliTTTakashi Tatsuta

Key Points

  • To define the cellular functions of prohibitins and investigate their role in regulating mitochondrial architecture, cell proliferation, and apoptosis.
  • Generated conditional murine knockout models targeting Phb2 to selectively eliminate prohibitin complexes.
  • Assessed OPA1 isoform processing, mitochondrial cristae morphology, cell proliferation rates, and apoptotic resistance in Phb2-deficient cells.
  • Expressed a long OPA1 isoform in Phb2-knockout cells to evaluate the rescue of mitochondrial and cellular defects.
  • Deletion of Phb2 resulted in the selective loss of long OPA1 isoforms and caused severe defects in mitochondrial cristae morphogenesis.
  • Prohibitin deficiency directly impaired cell proliferation and rendered cells significantly more sensitive to apoptosis.
  • Transgenic reintroduction of a long OPA1 isoform rescued cristae morphogenesis defects and restored normal cell proliferation and survival in Phb2-deficient cells.

Abstract

Prohibitins comprise an evolutionarily conserved and ubiquitously expressed family of membrane proteins with poorly described functions. Large assemblies of PHB1 and PHB2 subunits are localized in the inner membrane of mitochondria, but various roles in other cellular compartments have also been proposed for both proteins. Here, we used conditional gene targeting of murine Phb2 to define cellular activities of prohibitins. Our experiments restrict the function of prohibitins to mitochondria and identify the processing of the dynamin-like GTPase OPA1, an essential component of the mitochondrial fusion machinery, as the central cellular process controlled by prohibitins. Deletion of Phb2 leads to the selective loss of long isoforms of OPA1. This results in an aberrant cristae morphogenesis and an impaired cellular proliferation and resistance toward apoptosis. Expression of a long OPA1 isoform in PHB2-deficient cells suppresses these defects, identifying impaired OPA1 processing as the primary cellular defect in the absence of prohibitins. Our results therefore assign an essential function for the formation of mitochondrial cristae to prohibitins and suggest a coupling of cell proliferation to mitochondrial morphogenesis.

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Cite This Study

Merkwirth et al. (2008) studied this question.

synapsesocial.com/papers/69dd184baa9a964e8d133405https://doi.org/10.1101/gad.460708
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