首页> 外文期刊>Biochimica et Biophysica Acta. General Subjects >Purification and partial characterization of marinocine, a new broad-spectrum antibacterial protein produced by Marinomonas mediterranea.
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Purification and partial characterization of marinocine, a new broad-spectrum antibacterial protein produced by Marinomonas mediterranea.

机译:马里诺碱的纯化和部分表征,马里诺碱是一种新型的广谱抗菌蛋白。

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This work describes the purification and partial characterization of a novel antibacterial compound, here named marinocine, produced by Marinomonas mediterranea, a melanogenic marine bacterium with rich secondary metabolism. The antibacterial compound is a protein detected in the medium at death phase of growth. It has been purified to apparent homogeneity from the supernatants of cultures by means of ethanol precipitation followed by column chromatographies on DEAE-Sephadex and Sephacryl HR-200. The protein has an apparent molecular mass of 140-170 kDa according to gel permeation chromatography and non-denaturing SDS-PAGE, although in denaturing SDS-PAGE two mayor bands of 97 and 185 kDa appear. Marinocine is relatively heat-stable and shows a great resistance against many hydrolytic enzymes such as glycosidases, lipase, and proteases. The antibacterial range of the molecule includes Gram-positive and Gram-negative microorganisms, as well as some nosocomial isolates, Staphylococcus aureus and Pseudomonas sp., highly resistant to classical antibiotics. By contrast, marinocine did not show any effect on the eukaryotic microorganisms tested. Regarding eukaryotic CHO cells, the decrease on viability was much lower than the one observed on bacterial cells.
机译:这项工作描述了一种新型抗菌化合物的纯化和部分表征,该抗菌化合物在这里称为marinocine,由Marinomonas mediterranea生产,它是具有丰富的次生代谢的黑色素海洋细菌。抗菌化合物是在生长死亡阶段在培养基中检测到的蛋白质。已通过乙醇沉淀,然后在DEAE-Sephadex和Sephacryl HR-200上进行柱色谱分离,从培养物的上清液中纯化出表观同质性。根据凝胶渗透色谱法和非变性SDS-PAGE,该蛋白的表观分子量为140-170 kDa,尽管在变性SDS-PAGE中会出现两个97 kDa和185 kDa的市长带。 Marinocine具有相对较高的热稳定性,并且对许多水解酶(如糖苷酶,脂肪酶和蛋白酶)表现出极大的抵抗力。该分子的抗菌范围包括革兰氏阳性和革兰氏阴性微生物,以及一些对经典抗生素具有高度抵抗力的医院分离株,金黄色葡萄球菌和假单胞菌。相比之下,马里诺因对测试的真核微生物没有显示任何作用。关于真核CHO细胞,活力的降低远低于细菌细胞上观察到的。

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