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大鼠空肠刷状缘膜囊泡对D-葡萄糖转运的发育成熟过程

Developmental maturation of D-glucose transport by rat jejunal brush-border membrane vesicles.

作者信息

Ghishan F K, Wilson F A

出版信息

Am J Physiol. 1985 Jan;248(1 Pt 1):G87-92. doi: 10.1152/ajpgi.1985.248.1.G87.

DOI:10.1152/ajpgi.1985.248.1.G87
PMID:4038441
Abstract

D-Glucose uptake into jejunal brush-border membrane vesicles was studied in suckling (2-wk-old), weanling (3-wk-old), and adolescent (6-wk-old) rats. The purity of the membrane vesicles from all age groups was validated by the finding that the specific activity of brush-border enzyme markers was severalfold greater in membrane vesicles compared with corresponding values in mucosal homogenate. D-Glucose uptake was inversely related to increasing medium osmolality, indicating that uptake of D-glucose was into the intravesicular space rather than binding. D-Glucose uptake was sodium dependent at all age groups; however, the initial uptake at 20 s was significantly greater in adolescent rats compared with suckling rats. The addition of valinomycin to KCl-preincubated vesicles in the presence of Na+ gradient resulted in a severalfold increase in D-glucose initial uptake over Na+ gradient alone, indicating that D-glucose uptake was electrogenic at all age groups. To delineate the mechanism for the decrease in the initial uptake in suckling rats, two experiments were performed: 1) an exchange tracer study that indicated the activity of D-glucose-Na+ transporters was similar in suckling and adolescent rats, and 2) a study that indicated 22Na uptake, as an indicator for Na+ permeability, was significantly greater in suckling rats compared with adolescent rats. These findings suggest that a Na+-dependent, electrogenic D-glucose uptake is already developed in the suckling period; however, because of the increased permeability to Na+, the Na+ gradient dissipates faster, resulting in a decrease in initial uptake.

摘要

研究了乳鼠(2周龄)、断奶幼鼠(3周龄)和青春期大鼠(6周龄)空肠刷状缘膜囊泡对D-葡萄糖的摄取。通过以下发现验证了所有年龄组膜囊泡的纯度:与粘膜匀浆中的相应值相比,膜囊泡中刷状缘酶标志物的比活性高出几倍。D-葡萄糖摄取与培养基渗透压升高呈负相关,表明D-葡萄糖摄取进入囊泡内空间而非结合。所有年龄组的D-葡萄糖摄取均依赖于钠;然而,与乳鼠相比,青春期大鼠在20秒时的初始摄取量显著更高。在存在Na+梯度的情况下,向预先用KCl孵育的囊泡中添加缬氨霉素,导致D-葡萄糖初始摄取量比单独的Na+梯度增加了几倍,表明所有年龄组的D-葡萄糖摄取都是生电的。为了阐明乳鼠初始摄取量降低的机制,进行了两项实验:1)一项交换示踪剂研究表明,D-葡萄糖-Na+转运体的活性在乳鼠和青春期大鼠中相似;2)一项研究表明,作为Na+通透性指标的22Na摄取在乳鼠中比青春期大鼠显著更高。这些发现表明,依赖于钠的生电D-葡萄糖摄取在哺乳期就已形成;然而,由于对Na+的通透性增加,Na+梯度消散得更快,导致初始摄取量降低。

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