Journal:Proteins:2

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<scene name='73/733982/Cv1/3'>16 of the 28 (F39L, G46S, L48S, I65T, A104D, P122Q, R157N, F161S, R243Q, R252G, R252Q, R252W, A259T, A259V, L311P, R408W</scene>, in orangered) have protein levels less than 50% wild type, as expected. Of these, all but two have wild type specific activity. The two exceptions, <scene name='73/733982/Cv1/4'>F39L and L48S</scene> <scene name='73/733982/Cv1/12'>SAme test</scene>, have approximately three fold higher specific activities than the wild type. '''These mutations lie in the regulatory domain, suggesting a possible explanation for the high activity level'''. The 16 mutants are classified into clinical categories of mild PKU
<scene name='73/733982/Cv1/3'>16 of the 28 (F39L, G46S, L48S, I65T, A104D, P122Q, R157N, F161S, R243Q, R252G, R252Q, R252W, A259T, A259V, L311P, R408W</scene>, in orangered) have protein levels less than 50% wild type, as expected. Of these, all but two have wild type specific activity. The two exceptions, <scene name='73/733982/Cv1/4'>F39L and L48S</scene> <scene name='73/733982/Cv1/12'>SAme test</scene>, have approximately three fold higher specific activities than the wild type. '''These mutations lie in the regulatory domain, suggesting a possible explanation for the high activity level'''. The 16 mutants are classified into clinical categories of mild PKU
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<scene name='73/733982/Cv1/9'>mutant D104 probably decreases hydrophobic interaction and forms new hydrogen bonds</scene>, moderate PKU <scene name='73/733982/Cv/21'>(F39L, L48S, I65T)</scene>, and classic PKU <scene name='73/733982/Cv/22'>(G46S, R243Q, R252G/Q/W, A259V, L311P, R408W)</scene>. <scene name='73/733982/Cv1/14'>TextToBeDisplayed</scene>
<scene name='73/733982/Cv1/9'>mutant D104 probably decreases hydrophobic interaction and forms new hydrogen bonds</scene>, moderate PKU <scene name='73/733982/Cv/21'>(F39L, L48S, I65T)</scene>, and classic PKU <scene name='73/733982/Cv/22'>(G46S, R243Q, R252G/Q/W, A259V, L311P, R408W)</scene>. <scene name='73/733982/Cv1/14'>TextToBeDisplayed</scene>
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<references/>
<references/>
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[[Category: Disease Molecular Analysis on Proteins]]
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[[Category: Molecular Pathology]]
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[[Category: Protein Pathology]]
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[[Category: Impact of Mutations]]
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[[Category: Effect of Mutations]]

Revision as of 18:29, 28 June 2016

PDB ID 2pah

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  1. 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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