2008
DOI: 10.1016/j.bmc.2007.11.047
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Rate enhancement of the oxidative folding of lysozyme by the use of aromatic thiol containing redox buffers

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Cited by 24 publications
(24 citation statements)
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“…Recently, improved redox buffers have been used, such as aliphatic dithiols, synthetic peptides, and aromatic monothiols. 32,[34][35][36][37][38]116 Aliphatic dithiols, e.g. Furthermore, in previous studies by our group, it has been shown that aromatic monothiols (pK a 5.5-6.6) increased the folding rate and the overall yield of native protein compared to standard aliphatic thiols (pK a 8.5-10).…”
Section: Redox Buffermentioning
confidence: 85%
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“…Recently, improved redox buffers have been used, such as aliphatic dithiols, synthetic peptides, and aromatic monothiols. 32,[34][35][36][37][38]116 Aliphatic dithiols, e.g. Furthermore, in previous studies by our group, it has been shown that aromatic monothiols (pK a 5.5-6.6) increased the folding rate and the overall yield of native protein compared to standard aliphatic thiols (pK a 8.5-10).…”
Section: Redox Buffermentioning
confidence: 85%
“…Mono QAS 3 increased the folding rate and yield of reduced lysozyme (0.1 mg/mL as well at 1 mg/mL). 37,38 Hence, new aromatic dithiols (16 and 17) similar in structure to the Mono QAS 3 were designed, having one thiol group on each of the two aromatic rings and the two aromatic rings connected by a hydrocarbon chain containing two quaternary ammonium groups.…”
Section: Quaternary Ammonium Aromatic Dithiols (16 and 17)mentioning
confidence: 99%
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