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胎儿期蛋白质合成速率和亮氨酸氧化速率的个体发生变化。

Ontogenetic changes in the rates of protein synthesis and leucine oxidation during fetal life.

作者信息

Kennaugh J M, Bell A W, Teng C, Meschia G, Battaglia F C

机构信息

Department of Pediatrics, University of Colorado School of Medicine, Denver 80262.

出版信息

Pediatr Res. 1987 Dec;22(6):688-92. doi: 10.1203/00006450-198712000-00015.

Abstract

Studies of fetal leucine metabolism and protein synthetic rate, using L-(1-14)leucine as tracer, were carried out in 12 pregnant ewes at midgestation and compared with similar studies in late gestation. The disposal rate of fetal plasma leucine ranged between 3.07 and 9.06 mumol/min and was correlated (r = 0.89) to fetal dry weight. The fluxes to CO2 excretion and to protein synthesis were 18.6 +/- 2.6 and 37.2 +/- 2.6% of disposal rate, respectively. The flux of leucine molecules into the placenta was relatively large and correlated to the placental/fetal dry weight ratio (r = 0.84). The mean fractional protein synthetic rate was 0.216 +/- 0.01 day-1. Comparison with late gestation data showed that fractional protein synthetic rate is inversely correlated (r = 0.87) to gestational age and that fetal protein synthetic rate (PRs, g/day) is related to fetal dry weight (DW,g) by the allometric equation: log PRs = -0.503 + 0.754 log DW The 0.754 exponent is similar to the exponent relating fetal oxygen consumption to dry weight (0.729). This indicates that protein synthesis and energy metabolism per g dry weight decrease during fetal growth at approximately the same rate so that the protein synthesis/oxygen consumption ratio tends to remain constant.

摘要

以L-(1-¹⁴C)亮氨酸作为示踪剂,对12只妊娠中期母羊的胎儿亮氨酸代谢和蛋白质合成速率进行了研究,并与妊娠后期的类似研究进行了比较。胎儿血浆亮氨酸的处置率在3.07至9.06 μmol/min之间,与胎儿干重相关(r = 0.89)。进入二氧化碳排泄和蛋白质合成的通量分别为处置率的18.6±2.6%和37.2±2.6%。亮氨酸分子进入胎盘的通量相对较大,与胎盘/胎儿干重比相关(r = 0.84)。平均蛋白质合成分数率为0.216±0.01天⁻¹。与妊娠后期数据的比较表明,蛋白质合成分数率与胎龄呈负相关(r = 0.87),并且胎儿蛋白质合成率(PRs,g/天)与胎儿干重(DW,g)通过异速生长方程相关:log PRs = -0.503 + 0.754 log DW。0.754这个指数与胎儿耗氧量与干重相关的指数(0.729)相似。这表明在胎儿生长过程中,每克干重的蛋白质合成和能量代谢以大致相同的速率下降,因此蛋白质合成/耗氧率趋于保持恒定。

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