Title of article :
Anion-Induced Folding of Rabbit Muscle Pyruvate Kinase: Existence of Multiple Intermediate Conformations at Low pH
Author/Authors :
Edwin ، نويسنده , , F. and Jagannadham، نويسنده , , M.V.، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2000
Pages :
12
From page :
99
To page :
110
Abstract :
Structural and functional characteristics of rabbit muscle pyruvate kinase (PK), a tetrameric enzyme having identical subunits, were investigated under neutral as well as acidic conditions by using enzymatic activity measurements and a combination of optical methods, such as circular dichroism, fluorescence, and ANS binding. At low pH and low ionic strength, pyruvate kinase exists in a partially unfolded state (UA state) retaining half of the secondary structure and no tertiary interactions along with a strong binding to the hydrophobic dye, ANS. Addition of anions, like NaCl, KCl, and Na2SO4, to the acid-unfolded state induces refolding, resulting structural propensities similar to that of native tetramer. When anion concentration exceeds a critical limit (0.7 M KCl), a sudden loss of secondary structure and decrease in fluorescence intensity with a redshift in the emission maximum are seen which may be due to the aggregation of the protein, probably due to the intermolecular association. The anion-refolded state is more stable than the UA state, and its stability is nearly equal to that of native protein toward chemical-induced unfolding by Gu–HCl and urea. Moreover, at low concentrations, Gu–HCl behaves like an anion, by inducing refolding of the acid-unfolded state with structural features equivalent to that of native molecule. These observations support a model of protein folding where certain conformations of low free energy prevail and are populated under non-native conditions with different stability.
Keywords :
acid-unfolded state , circular dichroism , molten globule , Gu–HCl unfolding , intrinsic fluorescence , Pyruvate kinase , ANS binding , salt-induced folding
Journal title :
Archives of Biochemistry and Biophysics
Serial Year :
2000
Journal title :
Archives of Biochemistry and Biophysics
Record number :
1617161
Link To Document :
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