Moyer M S, Goodrich A L, Rolfes M M, Suchy F J
Division of Pediatric Gastroenterology and Nutrition, Children's Hospital Research Foundation, Cincinnati, Ohio 45229.
Am J Physiol. 1988 Jun;254(6 Pt 1):G870-7. doi: 10.1152/ajpgi.1988.254.6.G870.
Taurine, a sulfur-containing beta-amino acid, may be conditionally essential during development. However, the existence of a carrier system for beta-amino acids has not been demonstrated in brush-border membrane vesicles (BBMV) from adult rat jejunum. We studied the uptake of [3H]taurine in BBMV prepared from the jejunum of developing and adult rats using a cation-precipitation technique. Uptake of 10 microM [3H]taurine by adult BBMV was slightly enhanced in the presence of an inwardly directed 100 mM Na+ gradient compared with a K+ gradient, and there was no intravesicular accumulation of isotope above the equilibrium concentration ("overshoot"). In contrast, taurine transport by BBMV from 10-day-old rat pups was markedly accelerated in the presence of a Na+ gradient compared with a K+ gradient and a twofold overshoot was observed. Na+-dependent taurine uptake was inhibited by the structural analogues hypotaurine and beta-alanine but not by alpha-alanine or glutamine, which are amino acids served by other transport systems. By computer analysis, Na+-dependent taurine uptake (2-1,000 microM) was saturable with an apparent Km of 74.80 +/- 11.87 microM and a Vmax of 53.55 +/- 2.76 pmol.mg protein-1.min-1. With increasing postnatal age, there was a marked decrease in the initial rate and peak intravesicular accumulation of taurine with disappearance of the overshoot by 21 days of age. We conclude 1) a Na+-dependent carrier mechanism for taurine transport is present in the brush-border membrane of suckling rat jejunum and 2) the activity of this carrier decreases after weaning.(ABSTRACT TRUNCATED AT 250 WORDS)
牛磺酸是一种含硫的β-氨基酸,在发育过程中可能为条件必需氨基酸。然而,在成年大鼠空肠的刷状缘膜囊泡(BBMV)中,尚未证实存在β-氨基酸载体系统。我们采用阳离子沉淀技术,研究了发育中和成年大鼠空肠制备的BBMV对[³H]牛磺酸的摄取。与K⁺梯度相比,在存在内向的100 mM Na⁺梯度时,成年BBMV对10 μM [³H]牛磺酸的摄取略有增强,且囊泡内同位素没有超过平衡浓度的积累(“过冲”)。相反,与K⁺梯度相比,在存在Na⁺梯度时,10日龄幼鼠的BBMV对牛磺酸的转运明显加速,并且观察到两倍的过冲。Na⁺依赖性牛磺酸摄取受到结构类似物次牛磺酸和β-丙氨酸的抑制,但不受α-丙氨酸或谷氨酰胺的抑制,α-丙氨酸和谷氨酰胺是由其他转运系统转运的氨基酸。通过计算机分析,Na⁺依赖性牛磺酸摄取(2 - 1000 μM)具有饱和性,表观Km为74.80 ± 11.87 μM,Vmax为53.55 ± 2.76 pmol·mg蛋白⁻¹·min⁻¹。随着出生后年龄的增加,牛磺酸的初始摄取速率和囊泡内积累峰值显著降低,到21日龄时过冲消失。我们得出结论:1)在乳鼠空肠的刷状缘膜中存在Na⁺依赖性牛磺酸转运载体机制;2)断奶后该载体的活性降低。(摘要截短至250字)