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首页> 外文期刊>Biochemistry >Conformational differences in Mycobacterium tuberculosis catalase-peroxidase KatG and its S315T mutant revealed by resonance Raman spectroscopy.
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Conformational differences in Mycobacterium tuberculosis catalase-peroxidase KatG and its S315T mutant revealed by resonance Raman spectroscopy.

机译:结核分枝杆菌过氧化物酶KATG的构象差异及其S315T突变体揭示了共振拉曼光谱。

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KatG from Mycobacterium tuberculosis is a heme-containing catalase-peroxidase, which belongs to the class I peroxidases and is important for activation of the prodrug isoniazid (INH), a front-line antituberculosis drug. In many clinical isolates, resistance to INH has been linked to mutations on the katG gene, and the most prevalent mutation, S315T, suggests that modification of the heme pocket has occurred. Electronic absorption and resonance Raman spectra of ferric wild-type (WT) KatG and its INH-resistant mutant KatG(S315T) at different pH values and their complexes with INH and benzohydroxamic acid (BHA) are reported. At neutral pH, a quantum mechanically mixed spin state (QS) is revealed, which coexists with five-coordinate and six-coordinate high-spin hemes in WT KatG. The QS heme is the major species in KatG(S315T). Addition of either INH or BHA to KatG induces only minor changes in the resonance Raman spectra, indicating that both compounds do not directly interact with the heme iron. New vibrational modes are observed at 430, 473, and 521 cm(-1), and these modes are indicative of a change in conformation in the KatG heme pocket. The intensity of these modes and the relative population of the QS heme are stable in KatG(S315T) but not in the WT enzyme. This indicates that there are differences in heme pocket stability between WT KatG and KatG(S315T). We will discuss the stabilization of the QS heme and propose a model for the inhibition of INH oxidation by KatG(S315T).
机译:来自结核分枝杆菌的Katg是一种含血红素的过氧化物酶,其属于I类过氧化物酶,对前药异黄素(INH)的激活是重要的,这是一种前线抗尿剂药物。在许多临床分离株中,抗伊恩植物的抗性与KATG基因的突变有关,并且最常见的突变S315T表明已经发生了血红素口袋的改性。据报道了在不同pH值的野生型(WT)KATG及其INH抗性突变体KATG(S315T)的电子吸收和共振拉曼光谱及其与INH和苯羟肟酸(BHA)的复合物。在中性pH下,揭示了量子机械混合的旋转状态(QS),其在WT KATG中与五个坐标和六坐标高旋转血清共存。 QS HEME是KATG(S315T)的主要物种。添加inh或bha至Katg诱导共振拉曼光谱的微小变化,表明两种化合物不会与血红素铁相互作用。在430,473和521cm(-1)处观察到新的振动模式,并且这些模式指示Katg血红袋中的构象变化。这些模式的强度和QS血红素的相对群体在KATG(S315T)中稳定,但不在WT酶中。这表明WT KATG和KATG之间存在血红素袋稳定性差异(S315T)。我们将讨论QS血红素的稳定性,并提出katg抑制inh氧化的模型(S315T)。

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