Xue H H, Fujie M, Sakaguchi T, Oda T, Ogawa H, Kneer N M, Lardy H A, Ichiyama A
First Department of Biochemistry, Hamamatsu University School of Medicine, Hamamatsu, Shizuoka 431-3192, Japan.
J Biol Chem. 1999 Jun 4;274(23):16020-7. doi: 10.1074/jbc.274.23.16020.
L-Serine metabolism in rat liver was investigated, focusing on the relative contributions of the three pathways, one initiated by L-serine dehydratase (SDH), another by serine:pyruvate/alanine:glyoxylate aminotransferase (SPT/AGT), and the other involving serine hydroxymethyltransferase and the mitochondrial glycine cleavage enzyme system (GCS). Because serine hydroxymethyltransferase is responsible for the interconversion between serine and glycine, SDH, SPT/AGT, and GCS were considered to be the metabolic exits of the serine-glycine pool. In vitro, flux through SDH was predominant in both 24-h starved and glucagon-treated rats. Flux through SPT/AGT was enhanced by glucagon administration, but even after the induction, its contribution under quasi-physiological conditions (1 mM L-serine and 0.25 mM pyruvate) was about (1)/(10) of that through SDH. Flux through GCS accounted for only several percent of the amount of L-serine metabolized. Relative contributions of SDH and SPT/AGT to gluconeogenesis from L-serine were evaluated in vivo based on the principle that 3H at the 3 position of L-serine is mostly removed in the SDH pathway, whereas it is largely retained in the SPT/AGT pathway. The results showed that SPT/AGT contributed only 10-20% even after the enhancement of its activity by glucagon. These results suggested that SDH is the major metabolic exit of L-serine in rat liver.
对大鼠肝脏中的L-丝氨酸代谢进行了研究,重点关注三条途径的相对贡献,一条由L-丝氨酸脱水酶(SDH)启动,另一条由丝氨酸:丙酮酸/丙氨酸:乙醛酸转氨酶(SPT/AGT)启动,还有一条涉及丝氨酸羟甲基转移酶和线粒体甘氨酸裂解酶系统(GCS)。由于丝氨酸羟甲基转移酶负责丝氨酸和甘氨酸之间的相互转化,因此SDH、SPT/AGT和GCS被认为是丝氨酸-甘氨酸池的代谢出口。在体外,在饥饿24小时和用胰高血糖素处理的大鼠中,通过SDH的通量均占主导地位。给予胰高血糖素可增强通过SPT/AGT的通量,但即使在诱导后,其在准生理条件下(1 mM L-丝氨酸和0.25 mM丙酮酸)的贡献约为通过SDH的通量的1/10。通过GCS的通量仅占代谢的L-丝氨酸量的百分之几。基于L-丝氨酸3位的3H在SDH途径中大多被去除,而在SPT/AGT途径中大多被保留的原理,在体内评估了SDH和SPT/AGT对L-丝氨酸糖异生的相对贡献。结果表明,即使在胰高血糖素增强其活性后,SPT/AGT的贡献也仅为10%-20%。这些结果表明,SDH是大鼠肝脏中L-丝氨酸的主要代谢出口。