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Regulation of staphylococcal toxic shock syndrome toxin-1 and total exoprotein production by magnesium ion.

机译:镁离子对葡萄球菌中毒性休克综合征毒素1和总外蛋白产生的调节。

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The effect of Mg2+ on in vitro production of extracellular proteins and, specifically, of toxic shock syndrome toxin-1 (TSST-1), by Staphylococcus aureus in a chemically defined medium was examined. As previously observed, the organisms did not proliferate in the absence of divalent cations. Low levels of Mg2+ (0.02 to 0.04 mM) permitted submaximal proliferation and elevated production of exoproteins. When the Mg2+ concentration was raised to 0.4 mM, multiplication was optimal and exoprotein levels were depressed. Ca2+ and Mn2+ diminished the effect of limiting Mg2+. The increased levels of exoproteins were not due to cell lysis or leakage since intracellular TSST-1 levels were not high enough to account for the increase in extracellular TSST-1 and since the intracellular enzyme, lactate dehydrogenase, was not found in culture supernatants. Cells cultured in low levels of Mg2+ remained in logarithmic growth longer than did those cultured in high concentrations of Mg2+ and, unlike the latter, produced exoproteins throughout the logarithmic growth phase. Low Mg2+ had no effect on cultures in the stationary phase, and organisms cultured in low Mg2+ recovered fully when transferred to high Mg2+. We conclude that, when cultured in medium deficient in Mg2+, S. aureus responds early in the growth cycle by increasing production of many extracellular proteins, including TSST-1.
机译:研究了Mg2 +对金黄色葡萄球菌在化学成分确定的培养基中体外产生细胞外蛋白,特别是毒性休克综合征毒素-1(TSST-1)的影响。如先前观察到的,该生物在不存在二价阳离子的情况下不会增殖。低水平的Mg2 +(0.02至0.04 mM)允许亚最大增殖,并增加外蛋白的产生。当Mg2 +浓度提高到0.4 mM时,繁殖最佳,而外蛋白水平降低。 Ca2 +和Mn2 +减少了限制Mg2 +的作用。胞外蛋白水平的增加不是由于细胞溶解或渗漏引起的,因为胞内TSST-1的水平不足以说明胞外TSST-1的增加,并且由于在培养上清液中未发现胞内酶乳酸脱氢酶。在低水平的Mg2 +中培养的细胞比在高浓度的Mg2 +中培养的细胞保持更长的对数生长,并且与后者不同,在整个对数生长期中都产生外蛋白。低Mg2 +对固定相的培养没有影响,在低Mg2 +中培养的生物体转移到高Mg2 +时可以完全恢复。我们得出的结论是,当在缺乏Mg2 +的培养基中培养时,金黄色葡萄球菌在生长周期的早期会通过增加许多细胞外蛋白质(包括TSST-1)的产生来做出响应。

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