首页> 美国卫生研究院文献>Journal of Bacteriology >Kinetic analysis by in vivo 31P nuclear magnetic resonance of internal Pi during the uptake of sn-glycerol-3-phosphate by the pho regulon-dependent Ugp system and the glp regulon-dependent GlpT system.
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Kinetic analysis by in vivo 31P nuclear magnetic resonance of internal Pi during the uptake of sn-glycerol-3-phosphate by the pho regulon-dependent Ugp system and the glp regulon-dependent GlpT system.

机译:由磷依赖的Ugp系统和glp依赖于GlpT的系统吸收Sn-甘油-3-磷酸的过程中内部Pi的体内31P核磁共振动力学分析。

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摘要

When sn-glycerol-3-phosphate (G3P) is taken up exclusively by the pho regulon-dependent Ugp transport system, it can be used as the sole source of Pi but not as the sole source of carbon. We had previously suggested that the inability of G3P to be used as a carbon source under these conditions is due to trans inhibition of G3P uptake by internal Pi derived from the degradation of G3P (P. Brzoska, M. Rimmele, K. Brzostek, and W. Boos, J. Bacteriol. 176:15-20, 1994). Here we report 31P nuclear magnetic resonance measurements of intact cells after exposure to G3P as well as to Pi, using different mutants defective in pst (high-affinity Pi transport), ugp (pho-dependent G3P transport), glpT (glp-dependent G3P transport), and glpD (aerobic G3P dehydrogenase). When G3P was transported by the Ugp system and when metabolism of G3P was allowed (glpD+), Pi accumulated to about 13 to 19 mM. When G3P was taken up by the GlpT system, the preexisting internal Pi pool (whether low or high) did not change. Both systems were inversely controlled by internal Pi. Whereas the Ugp system was inhibited, the GlpT system was stimulated by elevated internal Pi.
机译:当磷酸三氢锡依赖的Ugp传输系统专门吸收了三磷酸三甘油酯(G3P)时,它可以用作唯一的Pi来源,但不能用作唯一的碳源。我们以前曾提出,在这些条件下无法将G3P用作碳源的原因是由于内部Pi对G3P的吸收反式抑制了G3P的降解(P.Brzoska,M.Rimmele,K.Brzostek和W.Boos,J.Bacteriol.176:15-20,1994)。在这里,我们报告了完整细胞在暴露于G3P和Pi后的31P核磁共振测量结果,使用了在pst(高亲和力Pi转运),ugp(pho依赖性G3P转运),glpT(glp依赖性G3P)中有缺陷的不同突变体运输)和glpD(好氧G3P脱氢酶)。当通过Ugp系统转运G3P并允许G3P代谢(glpD +)时,Pi累积至约13至19 mM。当G3T系统使用G3P时,预先存在的内部Pi池(低或高)不会改变。两个系统都由内部Pi反向控制。 Ugp系统受到抑制,而GlpT系统却受到内部Pi升高的刺激。

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