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The tertiary structure of Bcl-2 shows that this protein contains a hydrophobic groove made of the BH1, BH2 and BH3 domains on its surface that allows dimerization with other members of the Bcl-2 family. This region needs to be highly conserved to keep the ability of interacting with the BH3 domain of the proapoptotic protein of the family, in fact, it has been shown that a mutation in this structure leads to the silencing of the dimerization thus may inhibit the activity of Bcl-2. The isoform 1 and 2 differs from two amino acid in the hydrophobic groove but this difference doesn’t induce any change in the conformation. However as expected, it affects the affinity with Bad and Bak proteins (from the Bcl-2 family). Indeed Bcl-2 isoform 1 shows to have a weaker affinity for Bad and Bak compared to isoform 2.<ref>[http://www.ncbi.nlm.nih.gov/pmc/articles/PMC30598/ Solution structure of the antiapoptotic protein bcl-2]</ref>
The tertiary structure of Bcl-2 shows that this protein contains a hydrophobic groove made of the BH1, BH2 and BH3 domains on its surface that allows dimerization with other members of the Bcl-2 family. This region needs to be highly conserved to keep the ability of interacting with the BH3 domain of the proapoptotic protein of the family, in fact, it has been shown that a mutation in this structure leads to the silencing of the dimerization thus may inhibit the activity of Bcl-2. The isoform 1 and 2 differs from two amino acid in the hydrophobic groove but this difference doesn’t induce any change in the conformation. However as expected, it affects the affinity with Bad and Bak proteins (from the Bcl-2 family). Indeed Bcl-2 isoform 1 shows to have a weaker affinity for Bad and Bak compared to isoform 2.<ref>[http://www.ncbi.nlm.nih.gov/pmc/articles/PMC30598/ Solution structure of the antiapoptotic protein bcl-2]</ref>
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Moreover, Glycine 145 in the BH1 domain and Tryptophane 188 in the BH2 domain of Bcl-2 are also clue residues for the interaction between the hydrophobic pocket and the BH3 domain of the partner. In fact it has been shown that a mutation on one of these two amino acids suppress such interaction.<ref>[https://books.google.fr/books?id=WhwvPX0K2BMC&pg=PA36&lpg=PA36&dq=bcl-2+isoform+1+electrostatic+potential&source=bl&ots=y3NzAJJIuV&sig=hlbn50xllAZ7fArKAODsypZZD1A&hl=fr&sa=X&ved=0ahUKEwjS88_0ztHKAhWH0hoKHddyAdIQ6AEIQTAD#v=onepage&q=bcl-2%20isoform%201%20electrostatic%20potential&f=false
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Moreover, Gly145 in the BH1 domain and Trp188 in the BH2 domain of Bcl-2 are also clue residues for the interaction between the hydrophobic pocket and the BH3 domain of the partner. In fact it has been shown that a mutation on one of these two amino acids suppress such interaction.<ref>[https://books.google.fr/books?id=WhwvPX0K2BMC&pg=PA36&lpg=PA36&dq=bcl-2+isoform+1+electrostatic+potential&source=bl&ots=y3NzAJJIuV&sig=hlbn50xllAZ7fArKAODsypZZD1A&hl=fr&sa=X&ved=0ahUKEwjS88_0ztHKAhWH0hoKHddyAdIQ6AEIQTAD#v=onepage&q=bcl-2%20isoform%201%20electrostatic%20potential&f=false
Essentials of Apoptosis : A Guide for Basic and Clinical Research Editors: Yin, Xiao-Ming, Dong, Zheng (Eds.)]</ref>
Essentials of Apoptosis : A Guide for Basic and Clinical Research Editors: Yin, Xiao-Ming, Dong, Zheng (Eds.)]</ref>
== Function ==
== Function ==

Revision as of 14:34, 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

3D STRUCTURE OF HUMAN BCL-2, ISOFORM1 (from residue 3 to 207) BASED ON NMR SPECTROSCOPY

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References

  1. Solution structure of the antiapoptotic protein bcl-2
  2. Solution structure of the antiapoptotic protein bcl-2
  3. [https://books.google.fr/books?id=WhwvPX0K2BMC&pg=PA36&lpg=PA36&dq=bcl-2+isoform+1+electrostatic+potential&source=bl&ots=y3NzAJJIuV&sig=hlbn50xllAZ7fArKAODsypZZD1A&hl=fr&sa=X&ved=0ahUKEwjS88_0ztHKAhWH0hoKHddyAdIQ6AEIQTAD#v=onepage&q=bcl-2%20isoform%201%20electrostatic%20potential&f=false Essentials of Apoptosis : A Guide for Basic and Clinical Research Editors: Yin, Xiao-Ming, Dong, Zheng (Eds.)]
  4. Control of apoptosis by the BCL-2 protein family: implications for physiology and therapy
  5. Peptides derived from the transmembrane domain of Bcl-2 proteins as potential mitochondrial priming tools.
  6. Solution structure of the antiapoptotic protein bcl-2
  7. [https://books.google.fr/books?id=WhwvPX0K2BMC&pg=PA36&lpg=PA36&dq=bcl-2+isoform+1+electrostatic+potential&source=bl&ots=y3NzAJJIuV&sig=hlbn50xllAZ7fArKAODsypZZD1A&hl=fr&sa=X&ved=0ahUKEwjS88_0ztHKAhWH0hoKHddyAdIQ6AEIQTAD#v=onepage&q=bcl-2%20isoform%201%20electrostatic%20potential&f=false Essentials of Apoptosis : A Guide for Basic and Clinical Research Editors: Yin, Xiao-Ming, Dong, Zheng (Eds.)]
  8. Alpha-Helical Destabilization of the Bcl-2-BH4-Domain Peptide Abolishes Its Ability to Inhibit the IP3 Receptor
  9. BH1 and BH2 domains of Bcl-2 are required for inhibition of apoptosis and heterodimerization with Bax
  10. Control of mitochondrial apoptosis by the Bcl-2 family
  11. Differential Targeting of Prosurvival Bcl-2 Proteins by Their BH3-Only Ligands Allows Complementary Apoptotic Function
  12. Distinct BH3 domains either sensitize or activate mitochondrial apoptosis, serving as prototype cancer therapeutics
  13. Control of apoptosis by the BCL-2 protein family: implications for physiology and therapy
  14. The Release of Cytochrome c from Mitochondria: A Primary Site for Bcl-2 Regulation of Apoptosis
  15. Prevention of Apoptosis by Bcl-2: Release of Cytochrome c from Mitochondria Blocked
  16. Bcl-2 and Bcl-XL Regulate Proinflammatory Caspase-1 Activation by Interaction with NALP1
  17. Bcl-2 Antiapoptotic Proteins Inhibit Beclin 1-Dependent Autophagy
  18. Control of proliferation by Bcl-2 family members
  19. BCL2 mutations are associated with increased risk of transformation and shortened survival in follicular lymphoma
  20. Bcl-2 Suppresses DNA Repair by Enhancing c-Myc Transcriptional Activity
  21. Bcl-2 family proteins and cancer
  22. Bcl-2 family proteins and cancer
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