首页> 美国卫生研究院文献>Antimicrobial Agents and Chemotherapy >Secretion of GOB Metallo-β-Lactamase in Escherichia coli Depends Strictly on the Cooperation between the Cytoplasmic DnaK Chaperone System and the Sec Machinery: Completion of Folding and Zn(II) Ion Acquisition Occur in the Bacterial Periplasm
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Secretion of GOB Metallo-β-Lactamase in Escherichia coli Depends Strictly on the Cooperation between the Cytoplasmic DnaK Chaperone System and the Sec Machinery: Completion of Folding and Zn(II) Ion Acquisition Occur in the Bacterial Periplasm

机译:大肠杆菌中GOB金属-β-内酰胺酶的分泌严格取决于细胞质DnaK分子伴侣系统和二级机械之间的合作:细菌周质中折叠和Zn(II)离子获取的完成

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摘要

Metallo-β-lactamases (MβLs) are zinc-dependent enzymes produced by many clinically relevant gram-negative pathogens that can hydrolyze most β-lactam antibiotics. MβLs are synthesized in the bacterial cytoplasm as precursors and are secreted into the periplasm. Here, we report that the biogenesis process of the recently characterized MβL GOB-18 demands cooperation between a main chaperone system of the bacterial cytoplasm, DnaK, and the Sec secretion machinery. Using the expression of the complete gob-18 gene from the gram-negative opportunistic pathogen Elizabethkingia meningoseptica in Escherichia coli as a model system, we found that the precursor of this metalloenzyme is secreted by the Sec pathway and reduces cell susceptibility to different β-lactam antibiotics. Moreover, acting with different J proteins such as cytoplasmic DnaJ and membrane-associated DjlA as cochaperones, DnaK plays an essential role in the cytoplasmic transit of the GOB-18 precursor to the Sec translocon. Our studies also revealed a less relevant role, that of assisting in GOB-18 secretion, for trigger factor, while no significant functions were found for other main cytoplasmic chaperones such as SecB or GroEL/ES. The overall findings indicate that the biogenesis of GOB-18 involves cytoplasmic interaction of the precursor protein mainly with DnaK, secretion by the Sec system, and final folding and incorporation of Zn(II) ions into the bacterial periplasm.
机译:金属β-内酰胺酶(MβLs)是锌相关的酶,由许多临床相关的革兰氏阴性病原体产生,可以水解大多数β-内酰胺抗生素。 MβLs作为前体在细菌细胞质中合成,并分泌到周质中。在这里,我们报道最近表征的MβLGOB-18的生物发生过程需要细菌细胞质的主要伴侣系统DnaK和Sec分泌机制之间的合作。使用革兰氏阴性机会病原体伊利沙伯菌脑膜败血病伊利沙伯氏菌在大肠杆菌中的完整gob-18基因表达作为模型系统,我们发现该金属酶的前体通过Sec途径分泌,并降低了细胞对不同β-内酰胺的敏感性抗生素。此外,DnaK与不同的J蛋白(例如胞质DnaJ和膜相关的DjlA)作为伴侣蛋白一起起作用,在GOB-18前体向Sec转运子的细胞质转运中起着至关重要的作用。我们的研究还显示,触发因子对GOB-18分泌的辅助作用较小,而其他主要细胞质分子伴侣如SecB或GroEL / ES则未发现重要功能。总体发现表明,GOB-18的生物发生涉及前体蛋白主要与DnaK的胞质相互作用,Sec系统的分泌以及最终折叠和将Zn(II)离子掺入细菌周质中。

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