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通过L型戊糖途径由6-磷酸己糖和磷酸丙糖非氧化合成5-磷酸戊糖

Non-oxidative synthesis of pentose 5-phosphate from hexose 6-phosphate and triose phosphate by the L-type pentose pathway.

作者信息

Williams J F, Blackmore P F

出版信息

Int J Biochem. 1983;15(6):797-816. doi: 10.1016/0020-711x(83)90152-0.

Abstract
  1. Ribose 5-phosphate was non-oxidatively synthesized from glucose 6-phosphate and triose phosphate by an enzyme extract prepared from rat liver (RLEP). Analysis of the intermediates by GLC, ion-exchange chromatography and specific enzymatic analysis, revealed the presence of the following intermediates of the L-type pentose pathway: altro-heptulose 1,7-bisphosphate, arabinose 5-phosphate and D-glycero D-ido octulose 8-phosphate. 2. With either [1-14C] or [2-14C]glucose 6-phosphate as diagnostic substrates, the distribution of 14C in ribose 5-phosphate was determined. At early time intervals (0.5-8 hr), [1-14C]glucose 6-phosphate introduced 14C into C-1, C-3 and C-5 of ribose 5-phosphate, at 17 hr 14C was confined to C-1. With [2-14C]glucose 6-phosphate as substrate, 14C was confined to C-2, C-3 and C-5 of ribose 5-phosphate during early times (0.5-8 hr), while at 17 hr 14C was located in C-2. 3. The transketolase exchange reaction, [14C]ribose 5-phosphate + altro-heptulose 7-phosphate in equilibrium ribose 5-phosphate + [14C]altro-heptulose 7-phosphate, was demonstrated for the first time using purified transketolase, its activity was measured and it is proposed to play a major role in the relocation of 14C into C-3 and C-5 or ribose 5-phosphate during the prediction labelling experiments. 4. The coupled transketolase-transaldolase reactions, 2 fructose 6-phosphate in equilibrium altro-heptulose 7-phosphate + xylulose 5-phosphate and 2 altro-heptulose 7-phosphate in equilibrium fructose 6-phosphate + D-glycero D-altro octulose 8-phosphate were demonstrated with purified enzymes, but are concluded to play a minor role in the non-oxidative synthesis of pentose 5-phosphate and octulose phosphate by (RLEP). 5. The formation of gem diol and dimers of erythrose 4-phosphate is proposed to account in part for the failure to detect monomeric erythrose 4-phosphate in the carbon balance studies. 6. The equilibrium value for the pentose pathway acting by the reverse mode in vitro was measured and contrasted with the value for the pathway acting in the forward direction. The initial specific rates of the pentose pathway reactions in vitro for the reverse and forward directions are measured. 7. The study which includes carbon balance, time course changes and 14C prediction labelling experiments reports a comprehensive investigation of the mechanism of the pentose pathway acting reversibly.
摘要
  1. 由大鼠肝脏制备的酶提取物(RLEP)通过非氧化途径从6-磷酸葡萄糖和磷酸丙糖合成了5-磷酸核糖。通过气相色谱(GLC)、离子交换色谱和特异性酶分析对中间产物进行分析,结果显示存在L型戊糖途径的以下中间产物:阿卓-庚酮糖1,7-二磷酸、5-磷酸阿拉伯糖和D-甘油-D-艾杜-辛酮糖8-磷酸。2. 以[1-¹⁴C]或[2-¹⁴C]6-磷酸葡萄糖作为诊断底物,测定了¹⁴C在5-磷酸核糖中的分布。在早期时间段(0.5 - 8小时),[1-¹⁴C]6-磷酸葡萄糖将¹⁴C引入到5-磷酸核糖的C-1、C-3和C-5位,在17小时时¹⁴C局限于C-1位。以[2-¹⁴C]6-磷酸葡萄糖作为底物时,在早期(0.5 - 8小时)¹⁴C局限于5-磷酸核糖的C-2、C-3和C-5位,而在17小时时¹⁴C位于C-2位。3. 首次使用纯化的转酮醇酶证明了转酮醇酶交换反应,即[¹⁴C]5-磷酸核糖 + 阿卓-庚酮糖7-磷酸 ⇌ 5-磷酸核糖 + [¹⁴C]阿卓-庚酮糖7-磷酸,测定了其活性,并提出在预标记实验中,该反应在将¹⁴C重新定位到5-磷酸核糖的C-3和C-5位过程中起主要作用。4. 用纯化的酶证明了转酮醇酶 - 转醛醇酶偶联反应,即2分子6-磷酸果糖 ⇌ 阿卓-庚酮糖7-磷酸 + 5-磷酸木酮糖,以及2分子阿卓-庚酮糖7-磷酸 ⇌ 6-磷酸果糖 + D-甘油-D-阿卓-辛酮糖8-磷酸,但得出结论认为,在(RLEP)非氧化合成5-磷酸戊糖和磷酸辛酮糖过程中,这些反应起次要作用。5. 提出4-磷酸赤藓糖的偕二醇和二聚体的形成部分解释了在碳平衡研究中未能检测到单体4-磷酸赤藓糖的原因。6. 测定了体外以反向模式作用的戊糖途径的平衡值,并与正向作用途径的值进行了对比。测量了体外戊糖途径反应在反向和正向的初始比速率。7. 该研究包括碳平衡、时间进程变化和¹⁴C预标记实验,全面报道了戊糖途径可逆作用机制的研究。

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