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羔羊肠道钠-葡萄糖协同转运蛋白的个体发育受饮食调控。

Ontogenic development of lamb intestinal sodium-glucose co-transporter is regulated by diet.

作者信息

Shirazi-Beechey S P, Hirayama B A, Wang Y, Scott D, Smith M W, Wright E M

机构信息

Department of Biochemistry, University College of Wales, Aberystwyth, Dyfed.

出版信息

J Physiol. 1991 Jun;437:699-708. doi: 10.1113/jphysiol.1991.sp018620.

Abstract
  1. The ontogenic development of the intestinal Na(+)-glucose co-transporter was measured in lambs as a function of diet. Transport activity was assayed in brush-border membrane vesicles and the expression of transport protein in the brush-border membrane determined by Western analysis. 2. Na(+)-dependent D-glucose transport increased to a maximum (300-700 pmol mg-1 s-1) within the first 2 weeks of birth and then declined to negligible amounts (less than 10 pmol mg-1 s-1) over the next 8 weeks. There was no further change over the next 2-3 years. Early changes were associated with modifications in both the maximum velocity Vmax for transport and expression of carrier protein in the brush-border plasma membrane. 3. Maintaining lambs on a milk replacer diet beyond the normal weaning period prevented the normal decline in the expression of Na(+)-glucose co-transport. At 5 weeks the transport rate was 433 +/- 150 pmol mg-1 s-1 in lambs maintained on milk replacer, but only 79 +/- 40 pmol mg-1 s-1 in normally reared control lambs. 4. Infusing the proximal intestine of 2- to 3-year-old sheep with 30 mM-D-glucose for four days increased the rate of transport 40- to 80-fold above that found in control animals perfused with mannitol. A similar but smaller increase was observed in one animal perfused with the non-metabolizable sugar alpha-methyl-D-glucopyranoside. The induced increase in glucose transport was correlated with the expression of the co-transporter protein in the brush-border plasma membrane. 5. It is concluded that the age-related decline in Na(+)-glucose co-transport in the sheep intestine is directly due to the decrease in D-glucose (and D-galactose) reaching the small intestine after development of the rumen. These results further suggest that luminal sugar substrates for the co-transporter promote both the maintenance and the up-regulation of the brush-border transport protein and it is the intact sugar itself which controls gene expression during enterocyte maturation.
摘要
  1. 以饮食为函数,测定了羔羊肠道钠-葡萄糖共转运体的个体发生发育。在刷状缘膜囊泡中测定转运活性,并通过蛋白质免疫印迹法确定刷状缘膜中转运蛋白的表达。2. 钠依赖性D-葡萄糖转运在出生后的前2周内增加到最大值(300 - 700 pmol mg-1 s-1),然后在接下来的8周内下降到可忽略不计的水平(低于10 pmol mg-1 s-1)。在接下来的2 - 3年中没有进一步变化。早期变化与转运的最大速度Vmax和刷状缘质膜中载体蛋白的表达改变有关。3. 在正常断奶期后,用代乳品喂养羔羊可防止钠-葡萄糖共转运表达的正常下降。在5周龄时,用代乳品喂养的羔羊的转运速率为433±150 pmol mg-1 s-1,而正常饲养的对照羔羊仅为79±40 pmol mg-1 s-1。4. 给2至3岁绵羊的近端肠道注入30 mM - D -葡萄糖,持续4天,其转运速率比用甘露醇灌注的对照动物高出40至80倍。在用非代谢性糖α-甲基-D-吡喃葡萄糖苷灌注的一只动物中观察到类似但较小的增加。诱导的葡萄糖转运增加与刷状缘质膜中共转运蛋白的表达相关。5. 得出的结论是,绵羊肠道中钠-葡萄糖共转运随年龄的下降直接归因于瘤胃发育后到达小肠的D-葡萄糖(和D-半乳糖)减少。这些结果进一步表明,共转运体的肠腔糖底物促进刷状缘转运蛋白的维持和上调,并且是完整的糖本身在肠细胞成熟过程中控制基因表达。
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/09a4/1180072/ceba99b7e916/jphysiol00445-0695-a.jpg

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