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古脊椎动物肠道对 L-丙氨酸和甘氨酸的吸收特征。

Characterisation of L-alanine and glycine absorption across the gut of an ancient vertebrate.

机构信息

School of Biological Sciences, University of Canterbury, Christchurch, New Zealand.

出版信息

J Comp Physiol B. 2011 Aug;181(6):765-71. doi: 10.1007/s00360-011-0571-5. Epub 2011 Mar 24.

Abstract

This study utilised an in vitro technique to characterise absorption of two amino acids across the intestinal epithelium of Pacific hagfish, Eptatretus stoutii. Uptake of L-alanine and glycine conformed to Michaelis-Menten kinetics. An uptake affinity (K(m); substrate concentration required to attain a 50% uptake saturation) of 7.0 mM and an uptake capacity (J (max)) of 83 nmol cm(-2) h(-1) were described for L-alanine. The K(m) and J(max) for glycine were 2.2 mM and 11.9 nmol cm(-2) h(-1), respectively. Evidence suggested that the pathways of L-alanine and glycine absorption were shared, and sodium dependent. Further analysis indicated that glycine uptake was independent of luminal pH and proline, but a component of uptake was significantly impaired by 100-fold excesses of threonine or asparagine. The presence of a short-term (24 h) exposure to waterborne glycine, similar in nature to that which may be expected to occur when feeding inside an animal carcass, had no significant impact on gastrointestinal glycine uptake. This may indicate a lack of cross talk between absorptive epithelia. These results are the first published data to describe gastrointestinal uptake of an organic nutrient in the oldest extant vertebrate and may provide potential insight into the evolution of nutrient transport systems.

摘要

本研究利用体外技术来描述两种氨基酸在太平洋八目鳗(Eptatretus stoutii)肠道上皮的吸收情况。L-丙氨酸和甘氨酸的吸收符合米氏动力学。L-丙氨酸的吸收亲和力(K(m);达到 50%吸收饱和所需的底物浓度)为 7.0 mM,吸收能力(J(max))为 83 nmol cm(-2) h(-1)。甘氨酸的 K(m)和 J(max)分别为 2.2 mM 和 11.9 nmol cm(-2) h(-1)。有证据表明,L-丙氨酸和甘氨酸的吸收途径是共享的,并且依赖于钠离子。进一步的分析表明,甘氨酸的吸收不依赖于腔液 pH 值和脯氨酸,但 100 倍过量的苏氨酸或天冬酰胺会显著损害吸收的一个组成部分。短期(24 小时)暴露于类似在动物尸体内部进食时可能发生的水合甘氨酸,对胃肠道甘氨酸吸收没有显著影响。这可能表明吸收上皮之间缺乏串扰。这些结果是描述最古老现存脊椎动物的胃肠道有机营养物吸收的首批已发表数据,可能为营养物质转运系统的进化提供潜在的见解。

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