Sandbox Reserved 1122
From Proteopedia
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NALP1 is a member of a NLR-family proteins. Its function is to activate the members of the proinflammatory caspase family which participate in the cytokine activation pathway (especially caspase-1). The Bcl-2 loop regions between the <scene name='71/719863/Scenebh3/2'>BH3</scene> and <scene name='71/719863/Scenelucas/1'>BH4</scene> bind NALP1. This interaction is exclusively reserved to two members of Bcl-2 family: Bcl-XL and Bcl-2 itself because this interacting region is highly variable in Bcl-2 family. By binding to NALP1, Bcl-2 inhibits the inflammatory caspase activation. Hence, it protects cell from the stress. | NALP1 is a member of a NLR-family proteins. Its function is to activate the members of the proinflammatory caspase family which participate in the cytokine activation pathway (especially caspase-1). The Bcl-2 loop regions between the <scene name='71/719863/Scenebh3/2'>BH3</scene> and <scene name='71/719863/Scenelucas/1'>BH4</scene> bind NALP1. This interaction is exclusively reserved to two members of Bcl-2 family: Bcl-XL and Bcl-2 itself because this interacting region is highly variable in Bcl-2 family. By binding to NALP1, Bcl-2 inhibits the inflammatory caspase activation. Hence, it protects cell from the stress. | ||
- | The posttranslational modifications found on the loops between <scene name='71/719863/Scenebh3/2'>BH3</scene> and <scene name='71/719863/Scenelucas/1'>BH4</scene> modify the anti-apoptotic activity of Bcl-2. Hence, the Bcl-2 binding to NALP1 can be affected by these modifications. <ref>[http://www.sciencedirect.com/science/article/pii/S0092867407003042 Bcl-2 and Bcl-XL Regulate Proinflammatory Caspase-1 Activation by Interaction with NALP1] </ref> | + | The posttranslational modifications found on the loops between <scene name='71/719863/Scenebh3/2'>BH3</scene> and <scene name='71/719863/Scenelucas/1'>BH4</scene> (rich in Ser and Thr residues) modify the anti-apoptotic activity of Bcl-2. Hence, the Bcl-2 binding to NALP1 can be affected by these modifications. <ref>[http://www.sciencedirect.com/science/article/pii/S0092867407003042 Bcl-2 and Bcl-XL Regulate Proinflammatory Caspase-1 Activation by Interaction with NALP1] </ref> |
=== Interaction with c-Myc === | === Interaction with c-Myc === | ||
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Autophagy is a very conserved event during which different cytoplasmic organelles and other structures are delivered to the lysosome where they are recycled. This mechanism may enhance cell survival because it is responsible for getting rid of intracellular pathogens, toxic molecules or damaged organelles. On the other hand, if autophagy is excessive, it may lead to the cell death. This process has many regulatory pathways including the interaction between the autophagy protein Beclin 1 and Bcl-2. Only the Bcl-2 which is localized in the ER is capable to bind Beclin 1 through its <scene name='71/719863/Scenebh1/1'>BH1</scene> and <scene name='71/719863/Scenebh2/1'>BH2</scene> domains. Normally Beclin 1 forms a complex with hVps34 (Class III PI3K). This complex is important for the localization of other autophagy proteins in the lysosome membrane. It is one of the first steps in the autophagosome formation and it can be inhibited by Bcl-2. At normal conditions this interaction is minor but it increases when the cell is starving. Thus, Bcl-2 prevents starvation-induced autophagy. <ref> [http://www.cell.com/cell/fulltext/S0092-8674(05)00692-6 Bcl-2 Antiapoptotic Proteins Inhibit Beclin 1-Dependent Autophagy] </ref> | Autophagy is a very conserved event during which different cytoplasmic organelles and other structures are delivered to the lysosome where they are recycled. This mechanism may enhance cell survival because it is responsible for getting rid of intracellular pathogens, toxic molecules or damaged organelles. On the other hand, if autophagy is excessive, it may lead to the cell death. This process has many regulatory pathways including the interaction between the autophagy protein Beclin 1 and Bcl-2. Only the Bcl-2 which is localized in the ER is capable to bind Beclin 1 through its <scene name='71/719863/Scenebh1/1'>BH1</scene> and <scene name='71/719863/Scenebh2/1'>BH2</scene> domains. Normally Beclin 1 forms a complex with hVps34 (Class III PI3K). This complex is important for the localization of other autophagy proteins in the lysosome membrane. It is one of the first steps in the autophagosome formation and it can be inhibited by Bcl-2. At normal conditions this interaction is minor but it increases when the cell is starving. Thus, Bcl-2 prevents starvation-induced autophagy. <ref> [http://www.cell.com/cell/fulltext/S0092-8674(05)00692-6 Bcl-2 Antiapoptotic Proteins Inhibit Beclin 1-Dependent Autophagy] </ref> | ||
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+ | === Cell cycle control === | ||
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+ | Bcl-2 is able to exert an anti-proliferatif activity which is completely independant from its anti-apoptotic activity. In quiescent cells, Bcl-2 is responsible for faster G0/G1 arrest and for slower G0-G1/S transition. Posttranslational phosphorylations are very important for Bcl-2 anti-proliferatif activity, for example, phosphorylation at Thr 56 by CDK1 delays G2/M exit. <scene name='71/719863/Scenelucas/1'>BH4</scene> and unstructured loop between <scene name='71/719863/Scenebh3/2'>BH3</scene> and <scene name='71/719863/Scenelucas/1'>BH4</scene> are crucial for this cell cycle control activity. Tyr28 is critical for anti-proliferatif activity, a point mutation reduces the ability of Bcl-2 to block the re-entry of quiescent cells. Inhibition of G0-G1/S is a consequence are the increased levels of p130 and p27 which are regulated by Bcl-2. Bcl-2 also inhibits Raf-1 which normally activates ERK. ERK then inhibits Rb and this allows cell to pass the restriction point which leads to G1. Bcl-2 anti-proliferatif activity together with prevention of starvation-induced autophagy allow cells to survive in poor conditions. <ref> [http://www.sciencedirect.com/science/article/pii/S0167488903001824 Control of proliferation by Bcl-2 family members] </ref> | ||
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== Diseases == | == Diseases == | ||
Revision as of 11:35, 30 January 2016
This Sandbox is Reserved from 15/12/2015, through 15/06/2016 for use in the course "Structural Biology" taught by Bruno Kieffer at the University of Strasbourg, ESBS. This reservation includes Sandbox Reserved 1120 through Sandbox Reserved 1159. |
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HUMAN BCL-2, ISOFORM1
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References
- β Solution structure of the antiapoptotic protein bcl-2
- β Solution structure of the antiapoptotic protein bcl-2
- β Control of apoptosis by the BCL-2 protein family: implications for physiology and therapy
- β Peptides derived from the transmembrane domain of Bcl-2 proteins as potential mitochondrial priming tools.
- β Solution structure of the antiapoptotic protein bcl-2
- β Alpha-Helical Destabilization of the Bcl-2-BH4-Domain Peptide Abolishes Its Ability to Inhibit the IP3 Receptor
- β BH1 and BH2 domains of Bcl-2 are required for inhibition of apoptosis and heterodimerization with Bax
- β Control of mitochondrial apoptosis by the Bcl-2 family
- β Differential Targeting of Prosurvival Bcl-2 Proteins by Their BH3-Only Ligands Allows Complementary Apoptotic Function
- β Distinct BH3 domains either sensitize or activate mitochondrial apoptosis, serving as prototype cancer therapeutics
- β Control of apoptosis by the BCL-2 protein family: implications for physiology and therapy
- β The Release of Cytochrome c from Mitochondria: A Primary Site for Bcl-2 Regulation of Apoptosis
- β Prevention of Apoptosis by Bcl-2: Release of Cytochrome c from Mitochondria Blocked
- β Bcl-2 and Bcl-XL Regulate Proinflammatory Caspase-1 Activation by Interaction with NALP1
- β Bcl-2 Antiapoptotic Proteins Inhibit Beclin 1-Dependent Autophagy
- β Control of proliferation by Bcl-2 family members
- β BCL2 mutations are associated with increased risk of transformation and shortened survival in follicular lymphoma
- β Bcl-2 Suppresses DNA Repair by Enhancing c-Myc Transcriptional Activity
- β Bcl-2 family proteins and cancer
- β Bcl-2 family proteins and cancer