Hall G C, Flick M B, Jensen R A
J Bacteriol. 1983 Jan;153(1):423-8. doi: 10.1128/jb.153.1.423-428.1983.
A pattern of allosteric control for aromatic biosynthesis in cyanobacteria relies upon early-pathway regulation as the major control point for the entire branched pathway. In Synechococcus sp. strain PCC6301 (Anacystis nidulans), two enzymes which form precursors for L-phenylalanine biosynthesis are subject to control by feedback inhibition. 3-Deoxy-D-arabino-heptulosonate 7-phosphate synthase (first pathway enzyme) is feedback inhibited by L-tyrosine, whereas prephenate dehydratase (enzyme step 9) is feedback inhibited by L-phenylalanine and allosterically activated by L-tyrosine. Mutants lacking feedback inhibition of prephenate dehydratase excreted relatively modest quantities of L-phenylalanine. In contrast, mutants deregulated in allosteric control of 3-deoxy-D-arabino-heptulosonate 7-phosphate synthase excreted large quantities of L-phenylalanine (in addition to even greater quantities of L-tyrosine). Clearly, in the latter mutants, the elevated levels of prephenate must overwhelm the inhibition of prephenate dehydratase by L-phenylalanine, an effect assisted by increased intracellular L-tyrosine, an allosteric activator. The results show that early-pathway flow regulated in vivo by 3-deoxy-D-arabino-heptulosonate 7-phosphate synthase is the dominating influence upon metabolite flow-through to L-phenylalanine. L-Tyrosine biosynthesis exemplifies such early-pathway control even more simply, since 3-deoxy-D-arabino-heptulosonate 7-phosphate synthase is the sole regulatory enzyme subject to end-product control by L-tyrosine.
蓝细菌中芳香族生物合成的变构控制模式依赖于早期途径调控,将其作为整个分支途径的主要控制点。在聚球藻属菌株PCC6301(集胞藻)中,两种形成L-苯丙氨酸生物合成前体的酶受到反馈抑制的调控。3-脱氧-D-阿拉伯庚酮糖酸-7-磷酸合酶(途径中的第一种酶)受到L-酪氨酸的反馈抑制,而预苯酸脱水酶(第9步酶)受到L-苯丙氨酸的反馈抑制,并被L-酪氨酸变构激活。缺乏预苯酸脱水酶反馈抑制的突变体分泌相对少量的L-苯丙氨酸。相比之下,3-脱氧-D-阿拉伯庚酮糖酸-7-磷酸合酶变构控制失调的突变体分泌大量的L-苯丙氨酸(此外还分泌更多量的L-酪氨酸)。显然,在后者的突变体中,预苯酸水平的升高必定超过了L-苯丙氨酸对预苯酸脱水酶的抑制作用,细胞内L-酪氨酸(一种变构激活剂)水平的增加对这一效应起到了辅助作用。结果表明,体内由3-脱氧-D-阿拉伯庚酮糖酸-7-磷酸合酶调控的早期途径流量是影响代谢物流向L-苯丙氨酸的主要因素。L-酪氨酸的生物合成更简单地体现了这种早期途径控制,因为3-脱氧-D-阿拉伯庚酮糖酸-7-磷酸合酶是唯一受L-酪氨酸终产物控制的调节酶。