Zhang T M, Sener A, Malaisse W J
Laboratory of Experimental Medicine, Erasmus Medical School, Brussels Free University, Belgium.
Biochem Mol Med. 1995 Aug;55(2):131-7. doi: 10.1006/bmme.1995.1043.
The hydrolysis of the dimethyl ester of [1,4-14C]succinic acid and/or [2,3-14C]succinic acid was measured in homogenates of rat pancreatic islets, liver, jejunum, brain, BC3H1 mouse myocytes, NG108-19 mouse neuroblastoma x rat glioma hybrid cells, and Caco-2 human colon adenocarcinoma cells. The specific activity of the enzyme was much higher in liver, jejunum, and Caco-2 cells than in the other cell types. The affinity of the enzyme for succinic acid dimethyl ester (SAD) was also much higher in liver than in islet homogenates. In the latter case, both particulate and cytosolic activity were observed upon subcellular fractionation. The activity found in islet homogenates was commensurate with the rate of SAD hydrolysis in intact cells. While the intracellular pool of acidic metabolites generated from SAD remained fairly stable over a 15- to 120-min incubation and was mainly located in the cytosolic compartment, the amount of acidic metabolites released in the extracellular milieu progressively increased with the length of incubation. Such metabolites included both monocarboxylic and dicarboxylic acids, the latter consisting mainly of succinic acid and, to a much lesser extent, of fumaric acid and malic acid. However, at variance with SAD, succinic acid failed to be taken up by intact islets. There was no close parallelism between the specific activity of the SAD esterase and the extent of SAD utilization in distinct cell types.
在大鼠胰岛、肝脏、空肠、脑、BC3H1小鼠肌细胞、NG108 - 19小鼠神经母细胞瘤×大鼠胶质瘤杂交细胞以及Caco - 2人结肠腺癌细胞的匀浆中,测定了[1,4 - 14C]琥珀酸和/或[2,3 - 14C]琥珀酸二甲酯的水解情况。该酶在肝脏、空肠和Caco - 2细胞中的比活性远高于其他细胞类型。该酶对琥珀酸二甲酯(SAD)的亲和力在肝脏中也远高于胰岛匀浆。在后一种情况下,亚细胞分级分离后观察到了微粒体和胞质活性。在胰岛匀浆中发现的活性与完整细胞中SAD的水解速率相当。在15至120分钟的孵育过程中,由SAD产生的细胞内酸性代谢物池保持相当稳定,且主要位于胞质区室,而细胞外环境中释放的酸性代谢物量随孵育时间的延长而逐渐增加。此类代谢物包括一元羧酸和二元羧酸,后者主要由琥珀酸组成,富马酸和苹果酸的含量则少得多。然而,与SAD不同,琥珀酸未能被完整的胰岛摄取。在不同细胞类型中,SAD酯酶的比活性与SAD利用程度之间没有密切的平行关系。