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[L-赖氨酸的胎盘转运机制研究(利用人胎盘微绒毛(刷状缘)膜囊泡)]

[Study on the mechanism of placental transport of L-lysine (using human placental microvillous (brush border) membrane vesicles)].

作者信息

Iioka H, Moriyama I, Kyuma M, Amasaki M, Itoh K, Ichijo M

出版信息

Nihon Sanka Fujinka Gakkai Zasshi. 1985 Jul;37(7):1091-6.

PMID:3928775
Abstract

The uptake of L-lysine in human placental microvilli vesicles prepared from human term placenta was studied using the rapid filtration technique. The uptake of L-lysine into the vesicles was osmotically sensitive. This finding indicates that the uptake of L-lysine by placental microvilli vesicles represents transport into the membrane vesicles. The uptake of L-lysine into microvilli vesicles is sodium independent. The initial rate of uptake is markedly increased when the intravesicular space is rendered electrically more negative by membrane diffusion potential induced by the use of highly permeant anions or by K+ diffusion potentials via valinomycin. These results indicate that the sodium independent uptake of L-lysine into the microvilli membrane vesicles is dependent on the electrical potential difference of the membranes. A kinetic analysis of the uptake demonstrated that two transport systems for vesicular entry of L-lysine existed with a Km1 of 0.13 mM, Vmax1 of 590 pmol/mg protein/20 sec, Km2 of 0.91 mM, Vmax2 of 2010 pmol/mg protein/20 sec. The uptake of L-lysine in microvilli vesicles was inhibited by dibasic amino acid (L-arginine, L-ornithine, L-glutamine), but not by other classes of amino acid. These results indicate the existence of a dibasic amino acid specific transport system in placental microvilli membrane.

摘要

采用快速过滤技术,研究了从足月胎盘制备的人胎盘微绒毛囊泡对L-赖氨酸的摄取情况。L-赖氨酸进入囊泡的摄取过程对渗透压敏感。这一发现表明,胎盘微绒毛囊泡对L-赖氨酸的摄取代表其转运至膜囊泡内。L-赖氨酸进入微绒毛囊泡的过程不依赖于钠。当通过使用高渗透性阴离子诱导的膜扩散电位或通过缬氨霉素产生的钾离子扩散电位使囊泡内空间在电学上变得更负时,摄取的初始速率显著增加。这些结果表明,L-赖氨酸不依赖钠进入微绒毛膜囊泡的过程取决于膜的电势差。对摄取过程的动力学分析表明,存在两种L-赖氨酸进入囊泡的转运系统,其Km1为0.13 mM,Vmax1为590 pmol/mg蛋白质/20秒,Km2为0.91 mM,Vmax2为2010 pmol/mg蛋白质/20秒。微绒毛囊泡对L-赖氨酸的摄取受到二价氨基酸(L-精氨酸、L-鸟氨酸、L-谷氨酰胺)的抑制,但不受其他种类氨基酸的抑制。这些结果表明胎盘微绒毛膜中存在二价氨基酸特异性转运系统。

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