Title of article
Stability, denaturation and refolding of Mycobacterium tuberculosis MfpA, a DNA mimicking protein that confers antibiotic resistance Original Research Article
Author/Authors
Sergei Khrapunov، نويسنده , , Michael Brenowitz، نويسنده ,
Issue Information
روزنامه با شماره پیاپی سال 2011
Pages
8
From page
33
To page
40
Abstract
MfpA from Mycobacterium tuberculosis is a founding member of the pentapeptide repeat class of proteins (PRP) that is believed to confer bacterial resistance to the drug fluoroquinolone by mimicking the size, shape and surface charge of duplex DNA. We show that phenylalanine side chain stacking stabilizes the N-terminus of MfpAʹs pentapeptide thus extending the DNA mimicry analogy. The Lumry–Eyring model was applied to multiple spectral measures of MfpA denaturation revealing that the MfpA dimer dissociates to monomers which undergo a structural transition that leads to aggregation. MfpA retains high secondary and tertiary structure content under denaturing conditions. Dimerization stabilizes MfpAʹs pentapeptide repeat fold. The high Arrhenius activation energy of the barrier to aggregate formation rationalizes its stability. The mechanism of MfpA denaturation and refolding is a ‘double funnel’ energy landscape where the ‘native’ and ‘aggregate’ funnels are separated by the high barrier that is not overcome during in vitro refolding.
Keywords
Pentapeptide repeat protein , CD , protein folding , fluorescence , antibiotic resistance , MfpA
Journal title
Biophysical Chemistry
Serial Year
2011
Journal title
Biophysical Chemistry
Record number
1120497
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