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用于记录和动力学分析非洲爪蟾卵母细胞中表达的离子转运体的快速三角电压钳。

Fast, triangular voltage clamp for recording and kinetic analysis of an ion transporter expressed in Xenopus oocytes.

作者信息

Gradmann Dietrich, Boyd Carl M

机构信息

Abteilung Biophysik der Pflanze der Universität, Untere Karspüle 2, 37073 Göttingen, Germany.

出版信息

Biophys J. 2005 Jul;89(1):734-44. doi: 10.1529/biophysj.105.060657. Epub 2005 Apr 22.

Abstract

We present a procedure for determination of 11 system parameters of an ion transporter expressed in Xenopus oocytes. The experiments consist of fast triangular voltage-clamp experiments in the presence and absence of external substrate. A four-state enzymatic cycle operating between an external and an internal section of electrodiffusion is used for analysis. The explicit example treats experiments with the fungal 2H+-NO3- symporter EnNRT, a member of the major superfamily transporters. The results comprise a density of approximately 150 fmol functional transporter molecules per oocyte, a gross charge number z(E) approximately -0.3 of the empty binding site of the enzyme, individual rate constants for reorientation of the empty and occupied binding site in the range of 5-500 s(-1), electrical access sections between bulk solutions and reaction cycle of approximately 3% inside and 15% outside, an increase of internal NO3- at the plasma membrane from approximately 0.5 to approximately 2 mM during exposure to external NO3-, and K(D) approximately 0.3 microM3 inside and K(D) approximately 3 microM3 outside in binding the triplicate substrate (2H+ +NO3-). The results compare well with the known structure of the lactose permease, another major superfamily transporter.

摘要

我们提出了一种用于测定非洲爪蟾卵母细胞中表达的离子转运体11个系统参数的方法。实验包括在存在和不存在外部底物的情况下进行快速三角电压钳实验。使用在电扩散的外部和内部区域之间运行的四态酶循环进行分析。具体示例处理了真菌2H⁺-NO₃⁻同向转运体EnNRT的实验,它是主要超家族转运体的成员之一。结果包括每个卵母细胞约150 fmol功能性转运体分子的密度、酶的空结合位点的总电荷数z(E)约为 -0.3、空结合位点和被占据结合位点重新定向的个体速率常数在5 - 500 s⁻¹范围内、本体溶液与反应循环之间的电通路部分在内部约为3%,外部约为15%、在暴露于外部NO₃⁻期间质膜处内部NO₃⁻从约0.5 mM增加到约2 mM,以及在结合三联体底物(2H⁺ + NO₃⁻)时内部的K(D)约为0.3 μM³,外部的K(D)约为3 μM³。结果与乳糖通透酶(另一种主要超家族转运体)的已知结构比较吻合。

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