AbstractProtein–protein interactions between the Bcl2 family proteins regulate apoptosis. An imbalance of this interaction network due to the upregulation of the proto-oncogene Bcl2 leads to a resistance to apoptosis associated with tumor formation. Bcl2 overexpression inhibits BAX oligomerization and mitochondrial outer membrane (MOM) permeabilization. However, Bcl2 effects on earlier steps of BAX-mediated apoptosis are not fully understood. Bcl2 overexpression inhibits BAX insertion into the MOM but spontaneously increases BAX relocalization to the mitochondria. Also, a physical interaction between BAX and Bcl2 is necessary for these two effects to occur. Taken together, these results suggest upregulated Bcl2 stabilizes BAX loose binding ...
AbstractBcl-2 family proteins are central regulators of apoptosis. Various family members are locate...
AbstractBcl-2, the founding member of a family of apoptotic regulators, was initially identified as ...
Bcl-2 family members form a network of protein-protein interactions that regulate apoptosis through ...
AbstractProtein–protein interactions between the Bcl2 family proteins regulate apoptosis. An imbalan...
The Bcl-2 family protein Bax is a key effector of apoptosis. Lovell et al. (2008) now describe the r...
AbstractThe localization and control of Bcl-2 proteins on mitochondria is essential for the intrinsi...
SummaryThe Bcl-2 family member Bax translocates from the cytosol to mitochondria, where it oligomeri...
The Bcl-2 (B-cell lymphoma 2) protein Bax (Bcl-2 associated X, apoptosis regulator) can commit cells...
Mitochondrial outer membrane permeabilization (MOMP) is a critical control point during apoptosis th...
Antiapoptotic Bcl-2 proteins on mitochondria inhibit prodeath proteins, such as Bax, which are found...
AbstractThe Bcl-2 family of proteins plays a pivotal role in regulating cell life and death. Many of...
Apoptosis is a morphologically and biochemically distinct form of cell death that plays an essential...
A central control point for the induction of apoptosis mitochondrial outer membrane permeabilization...
The BH3 domain of Bcl-2 proteins was regarded as indispensable for apoptosis induction and for mutua...
Recent work has shown that Bcl-2 and other anti-apoptotic proteins partially deplete the endoplasmic...
AbstractBcl-2 family proteins are central regulators of apoptosis. Various family members are locate...
AbstractBcl-2, the founding member of a family of apoptotic regulators, was initially identified as ...
Bcl-2 family members form a network of protein-protein interactions that regulate apoptosis through ...
AbstractProtein–protein interactions between the Bcl2 family proteins regulate apoptosis. An imbalan...
The Bcl-2 family protein Bax is a key effector of apoptosis. Lovell et al. (2008) now describe the r...
AbstractThe localization and control of Bcl-2 proteins on mitochondria is essential for the intrinsi...
SummaryThe Bcl-2 family member Bax translocates from the cytosol to mitochondria, where it oligomeri...
The Bcl-2 (B-cell lymphoma 2) protein Bax (Bcl-2 associated X, apoptosis regulator) can commit cells...
Mitochondrial outer membrane permeabilization (MOMP) is a critical control point during apoptosis th...
Antiapoptotic Bcl-2 proteins on mitochondria inhibit prodeath proteins, such as Bax, which are found...
AbstractThe Bcl-2 family of proteins plays a pivotal role in regulating cell life and death. Many of...
Apoptosis is a morphologically and biochemically distinct form of cell death that plays an essential...
A central control point for the induction of apoptosis mitochondrial outer membrane permeabilization...
The BH3 domain of Bcl-2 proteins was regarded as indispensable for apoptosis induction and for mutua...
Recent work has shown that Bcl-2 and other anti-apoptotic proteins partially deplete the endoplasmic...
AbstractBcl-2 family proteins are central regulators of apoptosis. Various family members are locate...
AbstractBcl-2, the founding member of a family of apoptotic regulators, was initially identified as ...
Bcl-2 family members form a network of protein-protein interactions that regulate apoptosis through ...