[猪产前和产后肾脏糖异生酶的活性]。

Acta biologica et medica Germanica Pub Date : 1982-01-01
E Grün, K Pfüller, D Heyne, C Weber
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引用次数: 0

摘要

剖宫产猪(8头猪中有19头)的肾脏干物质和蛋白质含量及其PEPCK活性在妊娠后期(第80 ~ 112天)保持不变。出生后肾脏的干物质含量上升缓慢,但蛋白质含量明显上升。哺乳仔猪(17头3代)从出生到出生第9天,肾脏中FDPase活性基本保持在同一水平,而G6Pase活性则上升1.5-2倍。在新生仔猪的肾脏中,总PEPCK活性在出生后12小时内增加3-4倍,胞质酶活性增加2-3倍。在生命的第一周结束时,PEPCK的总活性下降了三分之一,而胞质酶的活性保持稳定。屠宰猪肾脏(n = 7)干物质含量和FDPase活性显著高于屠宰猪肾脏(n = 7),蛋白质含量和G6Pase活性与仔猪肾脏相同。与仔猪肾脏相比,PEPCK总活性降低了一半,胞质酶活性降低了三分之一。在成年猪的肾脏中,PEPCK活性在细胞质和线粒体中占同等比例,但在某些发育阶段,线粒体部分超过细胞质部分。成年猪肾皮质的PEPCK活性是肾髓质的2.5-3倍。
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[Activity of gluconeogenetic enzymes in the kidney of pigs during pre- and post-natal development].

In pig fetuses (19 of 8 dams) developed by Caesarean section the dry matter and protein content of the kidneys and their PEPCK activity remain constant during the last third (from 80th to 112th day) of gestation. After birth the dry matter content of the kidneys rises slowly, but their protein content remarkably. In the kidneys of suckling piglets (17 animals of 3 offsprings) the FDPase activity remains at the same level from birth to the 9th day of life, while in the same time the G6Pase activity rises 1.5-2 times. In the kidneys of newborn piglets the total PEPCK activity increases 3-4 times and the activity of the cytosolic enzyme 2-3 times during the first 12 hours of life. At the end of the first week of life the total PEPCK activity decreases by one-third, while the activity of the cytosolic enzyme remains stable. In the kidneys of slaughter pigs (n = 7) the dry matter content and the FDPase activity are significantly higher, the protein content and the G6Pase activity are the same as in the kidneys of piglets. The total PEPCK activity is one-half, the activity of the cytosolic enzyme one-third lower than in the kidneys of piglets. In the kidneys of adult pigs the PEPCK activity is localized to equal parts in the cytosol and in the mitochondria, but in some development stages the mitochondrial part exceeds that of the cytosol. In adult pigs the PEPCK activity of the renal cortex is 2.5-3 times higher than that of the renal medulla.

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