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首页> 外文期刊>Journal of Biosciences >Branch-point Stoichiometry Can Generate Weak Links In Metabolism: The Case Of Glycine Biosynthesis
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Branch-point Stoichiometry Can Generate Weak Links In Metabolism: The Case Of Glycine Biosynthesis

机译:分支点化学计量可以在代谢中产生弱环节:甘氨酸生物合成的情况

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摘要

Although the metabolic network permits conversion between almost any pair of metabolites, this versatility fails at certain sites because of chemical constraints (kinetic, thermodynamic and stoichiometric) that seriously restrict particular conversions. We call these sites weak links in metabolism, as they can interfere harmfully with management of matter and energy if the network as a whole does not include adequate safeguards. A critical weak link is created in glycine biosynthesis by the stoichiometry of the reaction catalyzed by glycine hydroxymethyltransferase (EC 2.1.2.1), which converts serine into glycine plus one C_1 unit: this produces an absolute dependence of the glycine production flux on the utilization of C_1 units for other metabolic pathways that do not work coordinately with glycine use. It may not be possible, therefore, to ensure that glycine is always synthesized in sufficient quantities to meet optimal metabolic requirements.
机译:尽管代谢网络允许几乎任何一对代谢物之间进行转化,但是由于化学限制(动力学,热力学和化学计量)严重限制了特定的转化,因此该多功能性在某些位置无法实现。我们称这些位置为新陈代谢中的薄弱环节,因为如果整个网络没有足够的保障措施,它们会有害地干扰物质和能量的管理。甘氨酸羟甲基转移酶(EC 2.1.2.1)催化的反应的化学计量,在甘氨酸生物合成中建立了关键的薄弱环节,将丝氨酸转化为甘氨酸加一个C_1单元:这产生了对甘氨酸生产通量的绝对依赖C_1单位,与甘氨酸的使用无法协同作用的其他代谢途径。因此,可能无法确保始终以足够的量合成甘氨酸以满足最佳代谢要求。

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