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首页> 外文期刊>Applied and Environmental Microbiology >Identification of two proline transport systems in Staphylococcus aureus and their possible roles in osmoregulation.
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Identification of two proline transport systems in Staphylococcus aureus and their possible roles in osmoregulation.

机译:金黄色葡萄球菌中两个脯氨酸转运系统的鉴定及其在渗透压调节中的可能作用。

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The food-borne pathogen Staphylococcus aureus is distinguished from other food-borne pathogens by its ability to grow at water activity values below 0.90. Previous studies have indicated that proline accumulation mediated by transport represents a primary osmoregulatory strategy utilized by this bacterium (C. B. Anderson and L. D. Witter, Appl. Environ, Microbiol. 43:1501-1503, 1982; I. Koujima, H. Hayashi, K. Tomochika, A. Okabe, and Y. Kanemasa, Appl. Environ. Microbiol. 35:467-470, 1978; K. J. Miller, S. C. Zelt, and J.-H. Bae, Curr. Microbiol. 23:131-137, 1991). In this study, we demonstrate the presence of two proline transport systems within whole cells of S. aureus, a high-affinity transport system (Km, 7 microM) and a low-affinity transport system (Km, 420 microM). Our results indicate that the low-affinity proline transport system is osmotically activated and is the primary system responsible for the accumulation of proline by this pathogen during growth at low water activity.
机译:食源性病原体金黄色葡萄球菌与其他食源性病原体的区别在于其能够在水活度值低于0.90时生长。先前的研究表明,通过运输介导的脯氨酸积累代表了该细菌利用的主要渗透调节策略(CB Anderson和LD Witter,Appl.Environ,Microbiol.43:1501-1503,1982; I.Koujima,H.Hayashi,K. Tomochika,A.Okabe和Y.Kanemasa,应用环境微生物学,35:467-470,1978; KJ Miller,SC Zelt和J.-H.Bae,Curr.Microbiol.23:131-137,1991 )。在这项研究中,我们证明了在金黄色葡萄球菌的整个细胞内存在两个脯氨酸转运系统,一个高亲和力转运系统(Km,7 microM)和一个低亲和力转运系统(Km,420 microM)。我们的结果表明,低亲和力的脯氨酸转运系统是渗透激活的,并且是在低水分活度下该病原体在脯氨酸积累过程中的主要系统。

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