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视锥细胞特异性鸟苷酸环化酶激活蛋白在斑马鱼视网膜中的钙信号差异。

Differential calcium signaling by cone specific guanylate cyclase-activating proteins from the zebrafish retina.

机构信息

Institute of Biology and Environmental Science, Carl von Ossietzky University Oldenburg, Oldenburg, Germany.

出版信息

PLoS One. 2011;6(8):e23117. doi: 10.1371/journal.pone.0023117. Epub 2011 Aug 2.

Abstract

Zebrafish express in their retina a higher number of guanylate cyclase-activating proteins (zGCAPs) than mammalians pointing to more complex guanylate cyclase signaling systems. All six zGCAP isoforms show distinct and partial overlapping expression profiles in rods and cones. We determined critical Ca(2+)-dependent parameters of their functional properties using purified zGCAPs after heterologous expression in E.coli. Isoforms 1-4 were strong, 5 and 7 were weak activators of membrane bound guanylate cyclase. They further displayed different Ca(2+)-sensitivities of guanylate cyclase activation, which is half maximal either at a free Ca(2+) around 30 nM (zGCAP1, 2 and 3) or around 400 nM (zGCAP4, 5 and 7). Zebrafish GCAP isoforms showed also differences in their Ca(2+)/Mg(2+)-dependent conformational changes and in the Ca(2+)-dependent monomer-dimer equilibrium. Direct Ca(2+)-binding revealed that all zGCAPs bound at least three Ca(2+). The corresponding apparent affinity constants reflect binding of Ca(2+) with high (≤ 100 nM), medium (0.1-5 µM) and/or low (≥ 5 µM) affinity, but were unique for each zGCAP isoform. Our data indicate a Ca(2+)-sensor system in zebrafish rod and cone cells supporting a Ca(2+)-relay model of differential zGCAP operation in these cells.

摘要

斑马鱼的视网膜中表达的鸟苷酸环化酶激活蛋白(zGCAPs)数量高于哺乳动物,表明其具有更复杂的鸟苷酸环化酶信号系统。所有六种 zGCAP 同工型在视杆和视锥细胞中均表现出独特且部分重叠的表达谱。我们使用在大肠杆菌中异源表达后纯化的 zGCAPs 来确定其功能特性的关键 Ca(2+)依赖性参数。同工型 1-4 是强有力的膜结合鸟苷酸环化酶激活剂,而 5 和 7 则较弱。它们进一步显示出不同的 Ca(2+)依赖性鸟苷酸环化酶激活的敏感性,其半最大效应在游离 Ca(2+)约 30 nM(zGCAP1、2 和 3)或约 400 nM(zGCAP4、5 和 7)时达到。斑马鱼 GCAP 同工型在其 Ca(2+)/Mg(2+)依赖性构象变化和 Ca(2+)依赖性单体-二聚体平衡方面也存在差异。直接 Ca(2+)结合表明所有 zGCAPs 至少结合了三个 Ca(2+)。相应的表观亲和力常数反映了 Ca(2+)与高(≤ 100 nM)、中(0.1-5 µM)和/或低(≥ 5 µM)亲和力的结合,但对于每种 zGCAP 同工型都是独特的。我们的数据表明,斑马鱼视杆和视锥细胞中的 Ca(2+)传感器系统支持这些细胞中 zGCAP 不同功能的 Ca(2+)接力模型。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/23b3/3149064/db672a70a23a/pone.0023117.g001.jpg

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