The Bcl-2 family regulates apoptosis by controlling mitochondrial integrity. To clarify whether its prosurvival members function by sequestering their Bcl-2 homology 3 (BH3)-only ligands or their multidomain relatives Bak and Bax, we analyzed whether four prosurvival proteins differing in their ability to bind specific BH3 peptides or Bak could protect isolated mitochondria. Most BH3 peptides could induce temperature-dependent cytochrome c release, but permeabilization was prevented by Bcl-x(L), Bcl-w, Mcl-1, or BHRF1. However, their protection correlated with the ability to bind Bak rather than the added BH3 peptide and could be overcome only by BH3 peptides that bind directly to the appropriate prosurvival member. Mitochondria protected b...
AbstractThe “BH3-only” proteins of the BCL-2 family require “multidomain” proapoptotic members BAX a...
The mitochondrial pathway of apoptosis is initiated by Bcl-2 homology region 3 (BH3)-only members of...
The molecular mechanism underlying mitochondrial BAK activation during apoptosis remains highly cont...
During apoptosis, the BCL-2 protein family controls mitochondrial outer membrane permeabilization (M...
Mitochondrial apoptosis is controlled by BCL2 family proteins, and the BH3-only proteins often act a...
apoptosis signals into actions. The interactions between BH3 region-only proteins and multi-BH regio...
homology (BH) regions transform apoptosis signals into actions. The interactions between BH3 region-...
SummaryWe show that the antiapoptotic proteins BCL-2, BCL-XL, MCL-1, BFL-1, and BCL-w each bear a un...
© 2015 Dr. Colin HockingsThe Bcl-2 apoptotic switch is the key decision point in the intrinsic pathw...
AbstractBcl-2 family proteins regulate the release of proteins like cytochrome c from mitochondria d...
Apoptosis that proceeds via the mitochondrial pathway involves mitochondrial outer membrane permeabi...
AbstractThe localization and control of Bcl-2 proteins on mitochondria is essential for the intrinsi...
During mitochondrial apoptosis, pro-apoptotic BH3-only proteins cause the translocation of cytosolic...
A central control point for the induction of apoptosis mitochondrial outer membrane permeabilization...
AbstractPro-apoptotic members of the Bcl-2 family can be subdivided in two classes according to thei...
AbstractThe “BH3-only” proteins of the BCL-2 family require “multidomain” proapoptotic members BAX a...
The mitochondrial pathway of apoptosis is initiated by Bcl-2 homology region 3 (BH3)-only members of...
The molecular mechanism underlying mitochondrial BAK activation during apoptosis remains highly cont...
During apoptosis, the BCL-2 protein family controls mitochondrial outer membrane permeabilization (M...
Mitochondrial apoptosis is controlled by BCL2 family proteins, and the BH3-only proteins often act a...
apoptosis signals into actions. The interactions between BH3 region-only proteins and multi-BH regio...
homology (BH) regions transform apoptosis signals into actions. The interactions between BH3 region-...
SummaryWe show that the antiapoptotic proteins BCL-2, BCL-XL, MCL-1, BFL-1, and BCL-w each bear a un...
© 2015 Dr. Colin HockingsThe Bcl-2 apoptotic switch is the key decision point in the intrinsic pathw...
AbstractBcl-2 family proteins regulate the release of proteins like cytochrome c from mitochondria d...
Apoptosis that proceeds via the mitochondrial pathway involves mitochondrial outer membrane permeabi...
AbstractThe localization and control of Bcl-2 proteins on mitochondria is essential for the intrinsi...
During mitochondrial apoptosis, pro-apoptotic BH3-only proteins cause the translocation of cytosolic...
A central control point for the induction of apoptosis mitochondrial outer membrane permeabilization...
AbstractPro-apoptotic members of the Bcl-2 family can be subdivided in two classes according to thei...
AbstractThe “BH3-only” proteins of the BCL-2 family require “multidomain” proapoptotic members BAX a...
The mitochondrial pathway of apoptosis is initiated by Bcl-2 homology region 3 (BH3)-only members of...
The molecular mechanism underlying mitochondrial BAK activation during apoptosis remains highly cont...