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首页> 外文期刊>Biochemistry >Synthesis of HPr(Ser-P)(His similar to P) by enzyme I of the phosphoenolpyruvate : sugar phosphotransferase system of Streptococcus salivarius
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Synthesis of HPr(Ser-P)(His similar to P) by enzyme I of the phosphoenolpyruvate : sugar phosphotransferase system of Streptococcus salivarius

机译:唾液链球菌磷酸烯醇丙酮酸的酶I合成HPr(Ser-P)(与P相似的His)

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摘要

HPr is a protein of the bacterial phosphoenolpyruvate: sugar phosphotransferase transport system (PTS). In Gram-positive bacteria, HPr can be phosphorylated on Ser(46) by HPr(Ser) kinase/phosphorylase (HPrK/P) and on His(15) by enzyme I (EI) of the PTS. In vitro studies have shown that phosphorylation on one residue greatly inhibits the second phosphorylation. However, streptococci contain significant amounts of HPr(Ser-P)(His similar to P) during exponential growth, and recent studies suggest that phosphorylation of HPr-(Ser-P) by EI is involved in the recycling of HPr(Ser-P)(His similar to P). We report in this paper a study on the phosphorylation of Streptococcus salivarius HPr, HPr(Ser-P), and HPr(S46D) by EI. Our results indicate that (i) the specificity constant (k(cat)/K-m) of EI for HPr(Ser-P) at pH 7.9 was approximately 5000-fold smaller than that observed for HPr, (ii) no metabolic intermediates were able to stimulate HPr(Ser-P) phosphorylation, (iii) the rate of HPr phosphorylation decreased at pHs below 6.5, while that of HPr- (Ser-P) increased and was almost 10-fold higher at pH 6.1 than at pH 7.9, (iv) HPr(S46D), a mutated HPr alleged to mimic HPr(Ser-P), was also phosphorylated more efficiently under acidic conditions, and, lastly, (v) phosphorylation of Bacillus subtilis HPr(Ser-P) by B. subtilis EI was also stimulated at acidic pH. Our results suggest that the high levels of HPr(Ser-P)(His similar to P) in streptococci result from the combination of two factors, a high physiological concentration of HPr(Ser-P) and stimulation of HPr(Ser-P) phosphorylation by EI at acidic pH, an intracellular condition that occurs in response to the acidification of the external medium during growth of the culture.
机译:HPr是细菌磷酸烯醇丙酮酸的蛋白质:糖磷酸转移酶转运系统(PTS)。在革兰氏阳性细菌中,HPr可以通过HPr(Ser)激酶/磷酸化酶(HPrK / P)在Ser(46)上磷酸化,而在PTS的酶I(EI)上在His(15)上磷酸化。体外研究表明,一个残基的磷酸化极大地抑制了第二个磷酸化。然而,链球菌在指数生长期间含有大量的HPr(Ser-P)(与P相似),最近的研究表明,EI对HPr-(Ser-P)的磷酸化参与了HPr(Ser-P)的再循环。 )(他与P相似)。我们在本文中报道了EI对唾液链球菌HPr,HPr(Ser-P)和HPr(S46D)磷酸化的研究。我们的结果表明(i)在pH 7.9时EI对HPr(Ser-P)的特异性常数(k(cat)/ Km)比对HPr观察到的特异性常数小约5000倍;(ii)没有代谢中间体为刺激HPr(Ser-P)磷酸化,(iii)pH低于6.5时,HPr磷酸化率降低,而HPr-(Ser-P)则增加,在pH 6.1时几乎是pH 7.9的10倍, (iv)HPr(S46D)是据称模仿HPr(Ser-P)的突变HPr,在酸性条件下也能更有效地磷酸化,最后,(v)枯草芽孢杆菌HPr(Ser-P)被B磷酸化。在酸性pH下也刺激了枯草芽孢杆菌EI。我们的研究结果表明,链球菌中高水平的HPr(Ser-P)(His与P相似)是由于两个因素的组合,即高浓度的HPr(Ser-P)和刺激HPr(Ser-P)在酸性pH下通过EI磷酸化,这是一种在培养生长过程中响应于外部培养基酸化而发生的细胞内状态。

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