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小鼠睾丸间质细胞表达多种 P2X 受体亚基。

Mouse Leydig cells express multiple P2X receptor subunits.

机构信息

Department of Physiology, School of Medicine of Ribeirão Preto, University of São Paulo, Av. Bandeirantes, 3900, 14049-900, Ribeirão Preto, SP, Brazil.

出版信息

Purinergic Signal. 2009 Sep;5(3):277-87. doi: 10.1007/s11302-008-9128-9. Epub 2008 Nov 20.

Abstract

ATP acts on cellular membranes by interacting with P2X (ionotropic) and P2Y (metabotropic) receptors. Seven homomeric P2X receptors (P2X(1)-P2X(7)) and seven heteromeric receptors (P2X(1/2), P2X(1/4), P2X(1/5), P2X(2/3), P2X(2/6), P2X(4/6), P2X(4/7)) have been described. ATP treatment of Leydig cells leads to an increase in Ca(2+) and testosterone secretion, supporting the hypothesis that Ca(2+) signaling through purinergic receptors contributes to the process of testosterone secretion in these cells. Mouse Leydig cells have P2X receptors with a pharmacological and biophysical profile resembling P2X(2). In this work, we describe the presence of several P2X receptor subunits in mouse Leydig cells. Western blot experiments showed the presence of P2X(2), P2X(4), P2X(6), and P2X(7) subunits. These results were confirmed by immunofluorescence. Functional results support the hypothesis that heteromeric receptors are present in these cells since 0.5 muM ivermectin induced an increase (131.2 +/- 5.9%) and 3 muM ivermectin a decrease (64.2 +/- 4.8%) in the whole-cell currents evoked by ATP. These results indicate the presence of functional P2X(4) subunits. P2X(7) receptors were also present, but they were non-functional under the present conditions because dye uptake experiments with Lucifer yellow and ethidium bromide were negative. We conclude that a heteromeric channel, possibly P2X(2/4/6), is present in Leydig cells, but with an electrophysiological and pharmacological phenotype characteristic of the P2X(2) subunit.

摘要

ATP 通过与 P2X(离子型)和 P2Y(代谢型)受体相互作用作用于细胞膜。已经描述了七种同源 P2X 受体(P2X(1)-P2X(7))和七种异源受体(P2X(1/2)、P2X(1/4)、P2X(1/5)、P2X(2/3)、P2X(2/6)、P2X(4/6)、P2X(4/7))。已经提出了 ATP 处理 Leydig 细胞导致 [Ca(2+)](i)增加和睾酮分泌增加的假说,这支持了嘌呤能受体的 Ca(2+)信号传导有助于这些细胞中睾酮分泌的过程的假说。小鼠 Leydig 细胞具有具有类似于 P2X(2)的药理学和生物物理学特征的 P2X 受体。在这项工作中,我们描述了几种 P2X 受体亚基在小鼠 Leydig 细胞中的存在。Western blot 实验显示存在 P2X(2)、P2X(4)、P2X(6)和 P2X(7)亚基。这些结果通过免疫荧光得到证实。功能结果支持异源受体存在于这些细胞中的假说,因为 0.5 μM 伊维菌素诱导 ATP 引起的全细胞电流增加(131.2 ± 5.9%),而 3 μM 伊维菌素则降低(64.2 ± 4.8%)。这些结果表明存在功能性 P2X(4)亚基。还存在 P2X(7)受体,但在目前的条件下它们是非功能性的,因为用 Lucifer yellow 和溴化乙锭进行的染料摄取实验为阴性。我们得出结论,异源通道,可能是 P2X(2/4/6),存在于 Leydig 细胞中,但是具有 P2X(2)亚基的电生理和药理学表型特征。

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