首页> 外文期刊>Biophysical Chemistry: An International Journal Devoted to the Physical Chemistry of Biological Phenomena >Stability, denaturation and refolding of Mycobacterium tuberculosis MfpA, a DNA mimicking protein that confers antibiotic resistance.
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Stability, denaturation and refolding of Mycobacterium tuberculosis MfpA, a DNA mimicking protein that confers antibiotic resistance.

机译:结核分枝杆菌MfpA(一种赋予抗生素抗性的DNA模仿蛋白)的稳定性,变性和复性。

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摘要

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 MfpA's 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 MfpA's 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.
机译:来自结核分枝杆菌的MfpA是五肽重复序列蛋白(PRP)的创始成员,该蛋白被认为通过模仿双链DNA的大小,形状和表面电荷而赋予细菌对药物氟喹诺酮的抗药性。我们表明苯丙氨酸侧链堆叠稳定了MfpA的五肽的N端,从而扩展了DNA模仿类比。 Lumry-Eyring模型应用于MfpA变性的多种光谱测量,揭示了MfpA二聚体解离为单体的经历结构转变导致聚集。 MfpA在变性条件下保留了较高的二级和三级结构含量。二聚化可稳定MfpA的五肽重复序列折叠。骨料形成屏障的高Arrhenius活化能使其稳定性合理化。 MfpA变性和重折叠的机制是“双漏斗”能量格局,其中“本机”和“聚集”漏斗被高障碍隔开,在体外重折叠过程中无法克服。

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