Trends in Cardiovascular Medicine
Volume 15, Issue 8 , Pages 283-290, November 2005

Bcl-2 Regulation of Mitochondrial Energetics

  • Elizabeth Murphy

      Affiliations

    • Corresponding Author InformationAddress correspondence to: Elizabeth Murphy, Laboratory of Signal Transduction, National Institute of Environmental Health Sciences, National Institutes of Health, 111 Alexander Drive, Maildrop F2-07, Research Triangle Park, NC 27709. Tel.: (+1) 919-541-3873; fax: (+1) 919-541-3385.
  • ,
  • Ken-ichi Imahashi
  • ,
  • Charles Steenbergen

Laboratory of Signal Transduction, National Institute of Environmental Health Sciences, National Institutes of Health, Research Triangle Park, NC

Department of Pathology, Duke University, Durham, NC

Recent data suggest that in addition to regulating apoptosis, Bcl-2 (an anti-apoptotic protein overexpressed in B-cell lymphoma) and Bcl-2 family members also regulate mitochondrial and cell physiology. t-Bid, a Bcl-2 family member, has been shown to modulate reorganization of mitochondrial cristae. Bcl-2 appears to regulate voltage-dependent anion channel permeability, which has important consequences for mitochondrial transport of adenine nucleotides, Ca2+, and other metabolites. BAD, a pro-apoptotic Bcl-2 family member, is required for the binding of glucokinase to a mitochondrial complex, and BAD null mice have altered glucose homeostasis. It has been suggested that Bcl-2 family members may regulate important mitochondrial/cell functions and serve as sentinels to detect abnormalities in these pathways and, when the abnormalities are severe enough, to initiate or facilitate cell death. Understanding the physiologic processes controlled by Bcl-2 will be important in understanding cell regulation, and it may also provide new insights into the regulation of apoptosis.

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PII: S1050-1738(05)00166-0

doi:10.1016/j.tcm.2005.09.002

Trends in Cardiovascular Medicine
Volume 15, Issue 8 , Pages 283-290, November 2005