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兔回肠黏膜中中性和碱性氨基酸转运系统的细胞分布

Cellular distribution of neutral and basic amino acid transport systems in rabbit ileal mucosa.

作者信息

King I S, Sepúlveda F V, Smith M W

出版信息

J Physiol. 1981;319:355-68. doi: 10.1113/jphysiol.1981.sp013913.

Abstract
  1. An autoradiographic technique is described whereby the cellular location of tritiated amino acids can be determined following uptake by rabbit ileal mucosa. 2. Stirring solutions in contact with the intestinal mucosa during measurement of rapid influx changes the quantity, but not the distribution, of alanine taken up by the tissue. 3. Conditions predicted to favour either a high affinity system (Ly1) or a low affinity system (Ly2) were used to measure lysine distribution following uptake. Maximal uptake for both transport systems occurred in fully differentiated enterocytes at the tips of villi. Initial maturation of the Ly1 system, which was slow, was followed by a rapid phase of development. The Ly2 system lacked this rapid phase of late development. 4. The cellular distribution of alanine entering on a low affinity Na-independent neutral amino acid carrier closely resembles that determine for Ly1 system for lysine entry. 5. Arginine is a potent inhibitor of lysine uptake through the Ly2 system. Little or no diffusion of lysine appears to take place into rabbit ileal enterocytes. 6. The different distribution of the high and low affinity systems for lysine transport provides further support for their independent existence. It also suggests that more than one message exists fo the switching on of amino acid transport function in differentiating enterocytes.
摘要
  1. 本文描述了一种放射自显影技术,通过该技术可以确定兔回肠黏膜摄取氚标记氨基酸后的细胞定位。2. 在测量快速内流期间搅拌与肠黏膜接触的溶液,会改变组织摄取的丙氨酸的量,但不会改变其分布。3. 使用预计有利于高亲和力系统(Ly1)或低亲和力系统(Ly2)的条件来测量摄取后赖氨酸的分布。两种转运系统的最大摄取均发生在绒毛顶端完全分化的肠细胞中。Ly1系统的初始成熟过程缓慢,随后是快速发育阶段。Ly2系统缺乏这种后期快速发育阶段。4. 通过低亲和力、不依赖钠的中性氨基酸载体进入的丙氨酸的细胞分布与通过Ly1系统进入的赖氨酸的细胞分布非常相似。5. 精氨酸是通过Ly2系统摄取赖氨酸的有效抑制剂。赖氨酸似乎很少或没有扩散到兔回肠肠细胞中。6. 赖氨酸转运的高亲和力和低亲和力系统的不同分布进一步支持了它们的独立存在。这也表明,在分化的肠细胞中,开启氨基酸转运功能存在不止一种信号。
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a824/1243843/60950cbd6b85/jphysiol00693-0365-a.jpg

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