Gambardella R L, Richardson K E
Biochim Biophys Acta. 1978 Dec 1;544(2):315-28. doi: 10.1016/0304-4165(78)90100-9.
[14C]Oxalate was found in the urine of fasted male Wistar rats fed L-[14C3]-serine, DL-[14C1]serine, [14C1]ethanolamine, [14C1]hydroxypyruvate, [14C3]-hydroxypyruvate, [14C1]glycolate or [14C2]glyoxylate. [14C1]Hydroxypyruvate and [14C1]ethanolamine were the least effective precursors of [14C]oxalate. 20% of the [14C1]serine and [14C3]serine administered was recovered as 14CO2, while less than 4% was metabolized by pathways known to contribute to oxalate synthesis. Oxalate synthesis from serine involved both the transamination to hydroxypyruvate and the conversion to glycine, but not decarboxylation to ethanolamine. The oxidation of [14C2]glyoxylate to [14C]oxalate in the rat was inhibited by hydroxypyruvate, but the oxidation of [14C1]glycolate to [14C]-oxalate was not significantly altered. [14C]Glycolaldehyde, [14C]glycolate, [14C]glyoxylate and [14C]oxalate were recovered in the urine of rats administered [14C3]hydroxypyruvate. This is consistent with the oxidation of hydroxypyruvate via glycolaldehyde leads to glycolate leads to glyoxylate leads to oxalate and is identical to the metabolic pathway for the oxidation of ethylene glycol to oxalate. However, the major metabolic intermediate recovered from [14C3]hydroxypyruvate was [14C]glyoxylate rather than [14C]glycolate, suggesting that an alternate pathway is contributing to the oxidation of hydroxypyruvate to oxalate in the rat.
在禁食的雄性Wistar大鼠尿液中发现,给它们喂食L-[14C3]-丝氨酸、DL-[14C1]丝氨酸、[14C1]乙醇胺、[14C1]羟基丙酮酸、[14C3]-羟基丙酮酸、[14C1]乙醇酸或[14C2]乙醛酸后,尿液中出现了[14C]草酸盐。[14C1]羟基丙酮酸和[14C1]乙醇胺是生成[14C]草酸盐效果最差的前体物质。所给予的[14C1]丝氨酸和[14C3]丝氨酸中有20%以14CO2的形式回收,而通过已知有助于草酸盐合成的途径代谢的不到4%。丝氨酸合成草酸盐涉及转氨生成羟基丙酮酸以及转化为甘氨酸,但不涉及脱羧生成乙醇胺。大鼠体内[14C2]乙醛酸氧化为[14C]草酸盐受到羟基丙酮酸的抑制,但[14C1]乙醇酸氧化为[14C]-草酸盐没有显著变化。给大鼠注射[14C3]羟基丙酮酸后,在其尿液中回收了[14C]乙醇醛、[14C]乙醇酸、[14C]乙醛酸和[14C]草酸盐。这与羟基丙酮酸通过乙醇醛氧化生成乙醇酸,再生成乙醛酸,最后生成草酸盐的过程一致,并且与乙二醇氧化为草酸盐的代谢途径相同。然而,从[14C3]羟基丙酮酸回收的主要代谢中间产物是[14C]乙醛酸而非[14C]乙醇酸,这表明在大鼠体内存在一条替代途径有助于羟基丙酮酸氧化为草酸盐。