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首页> 外文期刊>Journal of biological inorganic chemistry: JBIC: a publication of the Society of Biological Inorganic Chemistry >Inhibition of a Zn(II)-containing enzyme, alcohol dehydrogenase, by anticancer antibiotics, mithramycin and chromomycin A(3)
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Inhibition of a Zn(II)-containing enzyme, alcohol dehydrogenase, by anticancer antibiotics, mithramycin and chromomycin A(3)

机译:含锌(II)的酶,醇脱氢酶被抗癌抗生素,光神霉素和嗜铬霉素A抑制(3)

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摘要

One of the major attributes for the biological action of the aureolic acid anticancer antibiotics chromomycin A(3) (CHR) and mithramycin (MTR) is their ability to bind bivalent cations such as Mg(II) and Zn(II) ions and form high affinity 2:1 complexes in terms of the antibiotic and the metal ion, respectively. As most of the cellular Zn(II) ion is found to be associated with proteins, we have examined the effect of MTR/CHR on the structure and function of a representative structurally well characterized Zn(II) metalloenzyme, alcohol dehydrogenase (ADH) from yeast. MTR and CHR inhibit enzyme activity of ADH with inhibitory constants of micromolar order. Results from size-exclusion column chromatography, dynamic light scattering, and isothermal titration calorimetry have suggested that the mechanism of inhibition of the metalloenzyme by the antibiotics is due to the antibiotic-induced disruption of the enzyme quaternary structure. The nature of the enzyme inhibition, the binding stoichiometry of two antibiotics per monomer, and comparable dissociation constants for the antibiotic and free (or substrate-bound) ADH imply that the association occurs as a consequence of the binding of the antibiotics to Zn(II) ion present at the structural center. Confocal microscopy shows the colocalization of the antibiotic and the metalloenzyme in HepG2 cells, thereby supporting the proposition of physical association between the antibiotic(s) and the enzyme inside the cell.
机译:金黄色酸抗癌抗生素嗜铬霉素A(3)(CHR)和光神霉素(MTR)的生物学作用的主要属性之一是它们结合二价阳离子如Mg(II)和Zn(II)离子并形成高价离子的能力。分别在抗生素和金属离子方面的亲和力2:1络合物。由于发现大多数细胞中的Zn(II)离子与蛋白质有关,因此我们研究了MTR / CHR对代表性结构良好表征的Zn(II)金属酶,乙醇脱氢酶(ADH)的结构和功能的影响。酵母。 MTR和CHR以微摩尔级的抑制常数抑制ADH的酶活性。尺寸排阻柱色谱,动态光散射和等温滴定量热法的结果表明,抗生素抑制金属酶的机理是由于抗生素引起的酶四级结构破坏。酶抑制的性质,每个单体两种抗生素的结合化学计量以及该抗生素和游离的(或与底物结合的)ADH的相当的解离常数暗示该结合是由于抗生素与Zn(II)的结合而发生的)离子存在于结构中心。共聚焦显微镜显示HepG2细胞中抗生素和金属酶的共定位,从而支持了抗生素与细胞内酶之间的物理缔合。

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