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功能性P2X和P2Y核苷酸受体在单个小脑颗粒细胞中的共表达。

Coexpression of functional P2X and P2Y nucleotide receptors in single cerebellar granule cells.

作者信息

Hervás Cristina, Pérez-Sen Raquel, Miras-Portugal Ma Teresa

机构信息

Biochemistry Department, Veterinary Faculty, Complutense University of Madrid, Madrid, Spain.

出版信息

J Neurosci Res. 2003 Aug 1;73(3):384-99. doi: 10.1002/jnr.10676.

Abstract

The present study describes the presence and expression of functional nucleotide receptors, both ionotropic and metabotropic, in highly purified cultures of cerebellar granule neurons. Microfluorimetric experiments have been carried out to record specific Ca(2+) transients in individual granule neurons after challenge with diverse nucleotides. Although great heterogeneity was found in nucleotide responses in single cells, these responses all became modified during the course of granule cell differentiation, not only at the level of the number of responding cells, but also in the magnitude of the response to nucleotides. These in vitro developmental changes were more significant in metabotropic responses to pyrimidine nucleotides, UTP and UDP, which were down- and upregulated, respectively, during the time in culture. At least two types of ADP-specific receptors seem expressed in different granule cell subpopulations responding to 2MeSADP, as the specific P2Y(1) antagonist MRS-2179 inhibited Ca(2+) responses in only one of these populations. The great diversity of metabotropic responses observed was confirmed by the RT-PCR expression of different types of P2Y receptors in granule cell cultures: P2Y(1), P2Y(4), P2Y(6), and P2Y(12). Similarly, ionotropic nucleotide responses were confirmed by the presence of specific messengers for different P2X subunits, and by immunolabeling studies (P2X(1), P2X(2), P2X(3), P2X(4) and P2X(7)). Immunolabeling reflected great variety in the P2X subunit distribution along the granule neuron cytoarchitecture, with P2X(2), P2X(3) and P2X(4) present at somatodendritic locations, and P2X(1), P2X(7), and P2X(3), located at the axodendritic prolongations. The punctuated labeling pattern obtained for P2X(3) and P2X(7) subunits is particularly notable, as it presents a high degree of colocalization with synaptophysin, a specific marker of synaptic vesicles, suggesting specialized localization and function in granule neurons.

摘要

本研究描述了在高度纯化的小脑颗粒神经元培养物中功能性核苷酸受体(包括离子型和代谢型)的存在与表达。已进行微荧光测定实验,以记录在用不同核苷酸刺激后单个颗粒神经元中特异性的[Ca(2+)]i瞬变。尽管在单个细胞的核苷酸反应中发现了很大的异质性,但这些反应在颗粒细胞分化过程中均发生了改变,不仅在反应细胞数量水平上,而且在对核苷酸的反应幅度上。这些体外发育变化在对嘧啶核苷酸UTP和UDP的代谢型反应中更为显著,在培养期间,UTP反应下调,UDP反应上调。至少有两种类型的ADP特异性受体似乎在对2MeSADP有反应的不同颗粒细胞亚群中表达,因为特异性P2Y(1)拮抗剂MRS - 2179仅抑制其中一个亚群中的Ca(2+)反应。颗粒细胞培养物中不同类型P2Y受体(P2Y(1)、P2Y(4)、P2Y(6)和P2Y(12))的RT - PCR表达证实了观察到的代谢型反应的巨大多样性。同样,离子型核苷酸反应通过不同P2X亚基的特异性信使的存在以及免疫标记研究(P2X(1)、P2X(2)、P2X(3)、P2X(4)和P2X(7))得到证实。免疫标记反映了P2X亚基沿颗粒神经元细胞结构分布的巨大多样性,P2X(2)、P2X(3)和P2X(4)存在于胞体树突部位,而P2X(1)、P2X(7)和P2X(3)位于轴突树突延长部位。P2X(3)和P2X(7)亚基获得的点状标记模式尤为显著,因为它与突触囊泡的特异性标记物突触素高度共定位,表明在颗粒神经元中有特殊的定位和功能。

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