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细胞外 ATP 通过 P2X(4) 受体和 cAMP/PKA 信号转导介导对预成软骨细胞凝聚至关重要的 ATP 震荡。

Extracellular ATP signaling via P2X(4) receptor and cAMP/PKA signaling mediate ATP oscillations essential for prechondrogenic condensation.

机构信息

Research Center for Cooperative Projects, Hokkaido University Graduate School of Medicine, Sapporo 060-8638, Japan.

出版信息

J Endocrinol. 2012 Sep;214(3):337-48. doi: 10.1530/JOE-12-0131. Epub 2012 Jun 8.

Abstract

Prechondrogenic condensation is the most critical process in skeletal patterning. A previous study demonstrated that ATP oscillations driven by Ca(2+) oscillations play a critical role in prechondrogenic condensation by inducing oscillatory secretion. However, it remains unknown what mechanisms initiate the Ca(2+)-driven ATP oscillations, mediate the link between Ca(2+) and ATP oscillations, and then result in oscillatory secretion in chondrogenesis. This study has shown that extracellular ATP signaling was required for both ATP oscillations and prechondrogenic condensation. Among P2 receptors, the P2X(4) receptor revealed the strongest expression level and mediated ATP oscillations in chondrogenesis. Moreover, blockage of P2X(4) activity abrogated not only chondrogenic differentiation but also prechondrogenic condensation. In addition, both ATP oscillations and secretion activity depended on cAMP/PKA signaling but not on K(ATP) channel activity and PKC or PKG signaling. This study proposes that Ca(2+)-driven ATP oscillations essential for prechondrogenic condensation is initiated by extracellular ATP signaling via P2X(4) receptor and is mediated by cAMP/PKA signaling and that cAMP/PKA signaling induces oscillatory secretion to underlie prechondrogenic condensation, in cooperation with Ca(2+) and ATP oscillations.

摘要

预软骨形成凝聚是骨骼模式形成中最关键的过程。先前的研究表明,由 Ca(2+) 波动驱动的 ATP 波动通过诱导波动分泌在预软骨形成凝聚中起着关键作用。然而,目前尚不清楚是什么机制引发了 Ca(2+) 驱动的 ATP 波动,介导了 Ca(2+) 和 ATP 波动之间的联系,然后导致软骨生成中的波动分泌。本研究表明,细胞外 ATP 信号对于 ATP 波动和预软骨形成凝聚都是必需的。在 P2 受体中,P2X(4) 受体显示出最强的表达水平,并介导软骨生成中的 ATP 波动。此外,P2X(4) 活性的阻断不仅消除了软骨分化,而且还消除了预软骨形成凝聚。此外,ATP 波动和分泌活动都依赖于 cAMP/PKA 信号,而不依赖于 K(ATP) 通道活性以及 PKC 或 PKG 信号。本研究提出,细胞外 ATP 信号通过 P2X(4) 受体引发对于预软骨形成凝聚至关重要的 Ca(2+) 驱动的 ATP 波动,由 cAMP/PKA 信号介导,并且 cAMP/PKA 信号通过与 Ca(2+) 和 ATP 波动协同作用诱导波动分泌来支持预软骨形成凝聚。

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