Sandbox Reserved 1122: Difference between revisions

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== Therapies targeting Bcl-2 ==
== Therapies targeting Bcl-2 ==
As a prime target for new cancer therapies, many new drugs target Bcl-2 in order to treat cancers. That’s the case of Genasense, which an antisens oligonucleotide drug. Its aim is to hybridises with Bcl-2 mRNA, thus avoiding its translation and the formation of the protein (even if further studies have shown limited results). Many other drugs are under development, each targeting Bcl-2 ( for example, Small molecule inhibitors, such as Fenretinide, down-regulating Bcl-2). Molecules directly interacting with the protein such as Gossypol are also studied, showing relatively good results. <ref>[http://clincancerres.aacrjournals.org/content/15/4/1126.full Bcl-2 Inhibitors: Targeting Mitochondrial Apoptotic Pathways in Cancer Therapy ]</ref>
As a prime target for new cancer therapies, many new drugs target Bcl-2 in order to treat cancers. That’s the case of Genasense, which is an antisens oligonucleotide drug. Its aim is to hybridises with Bcl-2 mRNA, thus avoiding its translation and the formation of the protein (even if further studies have shown limited results). Many other drugs are under development, each targeting Bcl-2 ( for example, Small molecule inhibitors, such as Fenretinide, down-regulating Bcl-2). Molecules directly interacting with the protein such as Gossypol are also studied, showing relatively good results. <ref>[http://clincancerres.aacrjournals.org/content/15/4/1126.full Bcl-2 Inhibitors: Targeting Mitochondrial Apoptotic Pathways in Cancer Therapy ]</ref>


</StructureSection>
</StructureSection>
== References ==
== References ==
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Revision as of 16:27, 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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Bcl-2, Human Isoform 1

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

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References