Literature DB >> 11742101

Evidence for an initiation site for hen lysozyme folding from the reduced form using its dissected peptide fragments.

T Ohkuri1, T Ueda, M Tsurumaru, T Imoto.   

Abstract

We prepared two dissected fragments of hen lysozyme and examined whether or not these two fragments associated to form a native-like structure. One (Fragment I) is the peptide fragment Asn59-homoserine-105 containing Cys64-Cys80 and Cys76-Cys94. The other (Fragment II) is the peptide fragment Lys1-homoserine-58 connected by two disulfide bridges, Cys6-Cys127 and Cys30-Cys115, to the peptide fragment Asn106-Leu129. It was found that the Fragment I immobilized in the cuvette formed an equimolar complex with Fragment II (K(d) = 3.3x10(-4) M at pH 8 and 25 degrees C) by means of surface plasmon resonance. Moreover, from analyses by circular dichroism spectroscopy and ion-exchange chromatography of the mixture of Fragments I and II at pH 8 under non-reducing conditions, it was suggested that these fragments associated to give the native-like structure. However, the mutant Fragment I in which Cys64-Cys80 and Cys76-Cys94 are lacking owing to the mutation of Cys to Ala, or the mutant fragment in which Trp62 is mutated to Gly, did not form the native-like species with Fragment II, because the mutant Fragment I derived from mutant lysozymes had no local conformation due to mutations. Considering our previous results where the preferential oxidation of two inside disulfide bonds, Cys64-Cys80 and Cys76-Cys94, occurred in the refolding of the fully reduced Fragment I, we suggest that the peptide region corresponding to Fragment I is an initiation site for hen lysozyme folding.

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Year:  2001        PMID: 11742101     DOI: 10.1093/protein/14.11.829

Source DB:  PubMed          Journal:  Protein Eng        ISSN: 0269-2139


  2 in total

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Journal:  Int Immunol       Date:  2013-01-18       Impact factor: 4.823

2.  Reinvestigation of the oxidative folding pathways of hen egg white lysozyme: switching of the major pathways by temperature control.

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Journal:  Int J Mol Sci       Date:  2013-06-26       Impact factor: 5.923

  2 in total

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