1oxq: Difference between revisions

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==Overview==
==Overview==
Melanoma inhibitor of apoptosis (ML-IAP) is a potent anti-apoptotic, protein that is upregulated in a number of melanoma cell lines but not, expressed in most normal adult tissues. Overexpression of IAP proteins, such as ML-IAP or the ubiquitously expressed X-chromosome-linked IAP, (XIAP), in human cancers has been shown to suppress apoptosis induced by a, variety of stimuli. Peptides based on the processed N-terminus of, Smac/DIABLO can negate the ability of overexpressed ML-IAP or XIAP to, suppress drug-induced apoptosis. Such peptides have been demonstrated to, bind to the single baculovirus IAP repeat (BIR) of ML-IAP and the third, BIR of XIAP with similar high affinities (approximately 0.5 microM)., Herein, we use phage-display of naive peptide libraries and synthetic, peptides to investigate the peptide-binding properties of ML-IAP-BIR and, XIAP-BIR3. X-ray crystal structures of ML-IAP-BIR in complex with Smac-, and phage-derived peptides, together with peptide, structure-activity-relationship data, indicate that the peptides can be, modified to provide increased binding affinity and selectivity for, ML-IAP-BIR relative to XIAP-BIR3. For instance, substitution of Pro3' in, the Smac-based peptide (AVPIAQKSE) with, (2S,3S)-3-methylpyrrolidine-2-carboxylic acid [(3S)-methyl-proline], results in a peptide with 7-fold greater affinity for ML-IAP-BIR and about, 100-fold specificity for ML-IAP-BIR relative to XIAP-BIR3.
Melanoma inhibitor of apoptosis (ML-IAP) is a potent anti-apoptotic protein that is upregulated in a number of melanoma cell lines but not expressed in most normal adult tissues. Overexpression of IAP proteins, such as ML-IAP or the ubiquitously expressed X-chromosome-linked IAP (XIAP), in human cancers has been shown to suppress apoptosis induced by a variety of stimuli. Peptides based on the processed N-terminus of Smac/DIABLO can negate the ability of overexpressed ML-IAP or XIAP to suppress drug-induced apoptosis. Such peptides have been demonstrated to bind to the single baculovirus IAP repeat (BIR) of ML-IAP and the third BIR of XIAP with similar high affinities (approximately 0.5 microM). Herein, we use phage-display of naive peptide libraries and synthetic peptides to investigate the peptide-binding properties of ML-IAP-BIR and XIAP-BIR3. X-ray crystal structures of ML-IAP-BIR in complex with Smac- and phage-derived peptides, together with peptide structure-activity-relationship data, indicate that the peptides can be modified to provide increased binding affinity and selectivity for ML-IAP-BIR relative to XIAP-BIR3. For instance, substitution of Pro3' in the Smac-based peptide (AVPIAQKSE) with (2S,3S)-3-methylpyrrolidine-2-carboxylic acid [(3S)-methyl-proline] results in a peptide with 7-fold greater affinity for ML-IAP-BIR and about 100-fold specificity for ML-IAP-BIR relative to XIAP-BIR3.


==About this Structure==
==About this Structure==
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[[Category: Alexandru, D.]]
[[Category: Alexandru, D.]]
[[Category: Deshayes, K.]]
[[Category: Deshayes, K.]]
[[Category: Distefano, M.D.]]
[[Category: Distefano, M D.]]
[[Category: Elliott, L.O.]]
[[Category: Elliott, L O.]]
[[Category: Fairbrother, W.J.]]
[[Category: Fairbrother, W J.]]
[[Category: Flygare, J.A.]]
[[Category: Flygare, J A.]]
[[Category: Franklin, M.C.]]
[[Category: Franklin, M C.]]
[[Category: Kadkhodayan, S.]]
[[Category: Kadkhodayan, S.]]
[[Category: Vucic, D.]]
[[Category: Vucic, D.]]
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[[Category: zinc binding]]
[[Category: zinc binding]]


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