Journal:Proteins:2
From Proteopedia
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There are seven mutations <scene name='73/733982/Cv4/22'>(G247V, L255S, R270S, E280K, S349L, S349P and Y277D</scene>, in magenta) with atomic contacts of 6.5 Å or less to the <scene name='73/733982/Cv4/24'>phenylalanine substrate (substrate analog beta(2-thienyl) alanine (TIH) is shown), the BH4 cofactor or the Fe++ ion</scene>, and that are assigned as destabilizing by the structure SVM. Residues interacting with TIH, BH4 and the Fe++ ion are in green. Water molecules shown as red spheres. These mutant proteins are therefore expected to exhibit a combination of lower specific activity and a lower total protein level. Six of the seven (G247V, L255S, R270S, E280K, S349L, S349P) have protein levels less than half or in one case close to half (G247V, 56%) that of wild type, and very low protein activity, consistent with expectations. Clinical categories are available for E280K, S349L, and S349P, and are all “classic PKU”, consistent with the results and with experiment. The remaining mutant in this category, Y277D, has an experimental activity of zero, and is classified as mild or classic PKU, consistent with the profile SVM assignments. But the measured protein level is reported as 99% of wild type, inconsistent with a modest confidence stability assignment. This may be a computational false positive with respect to stability. | There are seven mutations <scene name='73/733982/Cv4/22'>(G247V, L255S, R270S, E280K, S349L, S349P and Y277D</scene>, in magenta) with atomic contacts of 6.5 Å or less to the <scene name='73/733982/Cv4/24'>phenylalanine substrate (substrate analog beta(2-thienyl) alanine (TIH) is shown), the BH4 cofactor or the Fe++ ion</scene>, and that are assigned as destabilizing by the structure SVM. Residues interacting with TIH, BH4 and the Fe++ ion are in green. Water molecules shown as red spheres. These mutant proteins are therefore expected to exhibit a combination of lower specific activity and a lower total protein level. Six of the seven (G247V, L255S, R270S, E280K, S349L, S349P) have protein levels less than half or in one case close to half (G247V, 56%) that of wild type, and very low protein activity, consistent with expectations. Clinical categories are available for E280K, S349L, and S349P, and are all “classic PKU”, consistent with the results and with experiment. The remaining mutant in this category, Y277D, has an experimental activity of zero, and is classified as mild or classic PKU, consistent with the profile SVM assignments. But the measured protein level is reported as 99% of wild type, inconsistent with a modest confidence stability assignment. This may be a computational false positive with respect to stability. | ||
- | *<scene name='73/733982/ | + | *<scene name='73/733982/Cv7/20'>Mutation G247V caused overpacking</scene>. <jmol><jmolButton><script>frame 1</script><text>Wild type</text></jmolButton></jmol> and the <jmol><jmolButton><script>frame next</script><text>Mutation</text></jmolButton></jmol>. <scene name='73/733982/Cv7/21'>Click here to see animation of this scene</scene>. |
*<scene name='73/733982/Cv4/26'>Mutation L255S caused decrease of hydrophobic interaction</scene>. | *<scene name='73/733982/Cv4/26'>Mutation L255S caused decrease of hydrophobic interaction</scene>. | ||
*<scene name='73/733982/Cv4/27'>Mutation R270S caused saltbridge lost and hydrogen bond lost; hydrophobic interaction decreased</scene>. | *<scene name='73/733982/Cv4/27'>Mutation R270S caused saltbridge lost and hydrogen bond lost; hydrophobic interaction decreased</scene>. |
Revision as of 09:52, 19 July 2016
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- ↑ Shi Z, Sellers J, Moult J. Protein stability and in vivo concentration of missense mutations in phenylalanine hydroxylase. Proteins. 2012 Jan;80(1):61-70. doi: 10.1002/prot.23159. Epub 2011 Sep 21. PMID:21953985 doi:http://dx.doi.org/10.1002/prot.23159
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