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二腺苷五磷酸是心肌兰尼碱受体的一种强效激活剂,揭示了腺嘌呤核苷酸的一个新的高亲和力结合位点。

Diadenosine pentaphosphate is a potent activator of cardiac ryanodine receptors revealing a novel high-affinity binding site for adenine nucleotides.

作者信息

Song L, Carter S M, Chen Y, Sitsapesan R

机构信息

Department of Physiology & Pharmacology, University of Bristol, School of Medical Sciences, University Walk, Bristol, UK.

出版信息

Br J Pharmacol. 2009 Mar;156(5):857-67. doi: 10.1111/j.1476-5381.2008.00071.x. Epub 2009 Feb 13.

Abstract

BACKGROUND AND PURPOSE

Diadenosine polyphosphates are normally present in cells at low levels, but significant increases in concentrations can occur during cellular stress. The aim of this study was to investigate the effects of diadenosine pentaphosphate (Ap5A) and an oxidized analogue, oAp5A on the gating of sheep cardiac ryanodine receptors (RyR2).

EXPERIMENTAL APPROACH

RyR2 channel function was monitored after incorporation into planar bilayers under voltage-clamp conditions.

KEY RESULTS

With10 micromol.L(-1) cytosolic Ca2+, a significant 'hump' or plateau at the base of the dose-response relationship to Ap5A was revealed. Open probability (Po) was significantly increased to a plateau of approximately 0.2 in the concentration range 100 pmol x L(-1)-10 micromol x L(-1). High Po values were observed at >10 micromol x L(-1) Ap5A, and Po values close to 1 could be achieved. Nanomolar levels of ATP and adenosine also revealed a hump at the base of the dose-response relationships, although GTP did not activate at any concentration, indicating a common, high-affinity binding site on RyR2 for adenine-based compounds. The oxidized analogue, oAp5A, did not significantly activate RyR2 via the high-affinity binding site; however, it could fully open the channel with an EC(50) of 16 micromol.L(-1) (Ap5A EC(50) = 140 micromol x L(-1)). Perfusion experiments suggest that oAp5A and Ap5A dissociate slowly from their binding sites on RyR2.

CONCLUSIONS AND IMPLICATIONS

The ability of Ap5A compounds to increase Po even in the presence of ATP and their slow dissociation from the channel may enable these compounds to act as physiological regulators of RyR2, particularly under conditions of cellular stress.

摘要

背景与目的

二腺苷多磷酸在细胞内通常以低水平存在,但在细胞应激期间其浓度会显著增加。本研究的目的是探究五磷酸二腺苷(Ap5A)及其氧化类似物oAp5A对绵羊心脏兰尼碱受体(RyR2)门控的影响。

实验方法

在电压钳条件下将RyR2整合到平面双层膜中后监测其通道功能。

主要结果

在胞质Ca2+浓度为10 μmol·L-1时,Ap5A剂量-反应关系曲线底部出现明显的“驼峰”或平台。在100 pmol·L-1至10 μmol·L-1浓度范围内,开放概率(Po)显著增加至约0.2的平台期。在Ap5A浓度>10 μmol·L-1时观察到高Po值,且Po值接近1。纳摩尔水平的ATP和腺苷在剂量-反应关系曲线底部也出现驼峰,尽管GTP在任何浓度下均未激活,表明RyR2上存在一个基于腺嘌呤化合物的共同高亲和力结合位点。氧化类似物oAp5A不能通过高亲和力结合位点显著激活RyR2;然而,它可以以16 μmol·L-1的半数有效浓度(EC50)(Ap5A的EC50 = 140 μmol·L-1)完全打开通道。灌注实验表明,oAp5A和Ap5A从RyR2上的结合位点解离缓慢。

结论与意义

即使在存在ATP的情况下,Ap5A化合物仍能增加Po,且它们从通道解离缓慢,这可能使这些化合物成为RyR2的生理调节剂,特别是在细胞应激条件下。

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