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Comparison of Antibiotic Resistance Mechanisms in Antibiotic-Producing and Pathogenic Bacteria

机译:产抗生素和致病菌中抗生素耐药机制的比较

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摘要

Antibiotic resistance poses a tremendous threat to human health. To overcome this problem, it is essential to know the mechanism of antibiotic resistance in antibiotic-producing and pathogenic bacteria. This paper deals with this problem from four points of view. First, the antibiotic resistance genes in producers are discussed related to their biosynthesis. Most resistance genes are present within the biosynthetic gene clusters, but some genes such as paromomycin acetyltransferases are located far outside the gene cluster. Second, when the antibiotic resistance genes in pathogens are compared with those in the producers, resistance mechanisms have dependency on antibiotic classes, and, in addition, new types of resistance mechanisms such as Eis aminoglycoside acetyltransferase and self-sacrifice proteins in enediyne antibiotics emerge in pathogens. Third, the relationships of the resistance genes between producers and pathogens are reevaluated at their amino acid sequence as well as nucleotide sequence levels. Pathogenic bacteria possess other resistance mechanisms than those in antibiotic producers. In addition, resistance mechanisms are little different between early stage of antibiotic use and the present time, e.g., β-lactam resistance in . Lastly, guanine + cytosine (GC) barrier in gene transfer to pathogenic bacteria is considered. Now, the resistance genes constitute resistome composed of complicated mixture from divergent environments.
机译:抗生素耐药性对人类健康构成巨大威胁。为了克服这个问题,必须了解产生抗生素和致病细菌中的抗生素抗性机制。本文从四个角度处理这个问题。首先,讨论了生产者中的抗生素抗性基因与它们的生物合成有关。大多数抗性基因存在于生物合成基因簇中,但是一些基因,如巴龙霉素乙酰转移酶则位于基因簇之外。其次,当将病原体中的抗生素抗性基因与生产者中的抗生素抗性基因进行比较时,抗药性机制取决于抗生素类别,此外,新的抗药性机制,如艾氏氨基糖苷乙酰转移酶和烯二炔类抗生素中的自我牺牲蛋白也出现了。病原体。第三,在生产者和病原体之间的抗性基因的氨基酸序列和核苷酸序列水平上重新评估。除抗生素生产者外,病原菌还具有其他耐药机制。另外,在抗生素使用的早期和目前之间,耐药机制几乎没有什么不同,例如,β-内酰胺耐药。最后,考虑了鸟嘌呤+胞嘧啶(GC)在基因转移到致病菌中的障碍。现在,抗性基因构成了由来自不同环境的复杂混合物组成的抗药组。

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