Occurrence and characterization of a low-affinity choline uptake mechanism in the internal tissues of the cestode Hymenolepis diminuta.

R A Webb
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Abstract

[3H]Choline was taken up by tissue slices of the cestode Hymenolepis diminuta by sodium-dependent and sodium-independent mechanisms. The sodium-dependent uptake was saturable, against an apparent concentration gradient, and by analysis of the kinetics of uptake could be delineated into a high-affinity choline uptake (HAChU) mechanism (Kt of approximately 2.0 microM; Vmax of approximately 0.15 pmol/mg wet weight tissue/min), and a low-affinity choline uptake (LAChU) mechanism (Kt of approximately 20.0 microM and a Vmax of approximately 2.0 pmol/mg wet weight tissue/min). Unlike the HAChU system, the LAChU system was unaffected by potassium. Furthermore, the responses of the LAChU and the HAChU transporters to pharmacological agents were distinctive, indicating that these transporters are two separate entities. Moreover, the entry or exit of choline via the LACh transporter was dependent upon the direction of the sodium gradient. Furthermore, the majority of released radiolabel from preloaded [3H]choline was associated with choline and was via a proteinaceous transporter. The present study is the first to provide direct evidence for a partial chemosmotic coupling of a LAChU system to the sodium electrochemical gradient.

一种低亲和力胆碱摄取机制的发生和特征在小膜绦虫的内部组织。
[3H]胆碱可通过钠依赖和钠不依赖两种机制被小膜管绦虫组织切片吸收。钠依赖性的摄取是饱和的,相对于明显的浓度梯度,通过摄取动力学分析可以描述为高亲和胆碱摄取(HAChU)机制(Kt约为2.0微米;Vmax约为0.15 pmol/mg湿重组织/min),以及低亲和力胆碱摄取(LAChU)机制(Kt约为20.0微米,Vmax约为2.0 pmol/mg湿重组织/min)。与HAChU系统不同,LAChU系统不受钾的影响。此外,LAChU和HAChU转运体对药物的反应是不同的,表明这些转运体是两个独立的实体。此外,胆碱通过LACh转运体进入或退出取决于钠梯度的方向。此外,预载[3H]胆碱释放的大部分放射性标签与胆碱相关,并通过蛋白质转运体释放。本研究首次为LAChU系统与钠电化学梯度的部分化学渗透耦合提供了直接证据。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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