Altered PLCβ/IP(3)/Ca(2+) Signaling Pathway Activated by GPRCs in Olfactory Neuronal Precursor Cells Derived from Patients Diagnosed with Schizophrenia.

精神分裂症患者嗅觉神经元前体细胞中GPRC激活的PLCβ/IP(3)/Ca(2+)信号通路发生改变

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作者:Sánchez-Florentino Zuly A, Romero-Martínez Bianca S, Flores-Soto Edgar, Montaño Luis M, Sommer Bettina, Valdés-Tovar Marcela, Argueta Jesús, Calixto Eduardo, Aquino-Gálvez Arnoldo, Castillejos-López Manuel, Serrano Héctor, Gomez-Verjan Juan C, López-Riquelme Germán O, Benítez-King Gloria A, Jaimez Ruth, Solís-Chagoyán Héctor
Background: Schizophrenia (SZ) is a multifactorial chronic psychiatric disorder with a worldwide prevalence of 1%. Altered expression of PLCβ occurs in SZ patients, suggesting alterations in the PLCβ/IP(3)/Ca(2+) signaling pathway. This cascade regulates critical cellular processes in all cell types, including the neuronal lineage; however, there is scarce evidence regarding the functionality of this transduction signaling in neuronal cells derived from SZ patients. Objective: We evaluated the functionality of the PLCβ/IP(3)/Ca(2+) pathway in olfactory neuronal precursor cells (hONPCs) obtained from SZ patients. Methods: Cryopreserved hONPCs isolated from SZ patients and healthy subjects (HS) were thawed. The cellular types in subcultures were corroborated by immunodetection of the multipotency and lineage markers SOX-2, Musashi-1, nestin, and β-III tubulin. The PLCβ/IP(3)/Ca(2+) pathway was activated by GPCR (G(q)) ligands (ATP, UTP, serotonin, and epinephrine). In addition, PLCβ and IP(3)R were directly stimulated by perfusing cells with the activators m-3M3FBS and ADA, respectively. Cytosolic Ca(2+) was measured by microfluorometry and by Ca(2+) imaging. The amount and subcellular distribution of the PLCβ1 and PLCβ3 isoforms were evaluated by confocal immunofluorescence. IP(3) concentration was measured by ELISA. Results: The results show that the increase of cytosolic Ca(2+) triggered by GPCR ligands or directly through either PLCβ or IP(3)R activation was significantly lower in SZ-derived hONPCs, regarding HS-derived cells. Moreover, the relative amount of the PLCβ1 and PLCβ3 isoforms and IP(3) production stimulated with m-3M3FBS were reduced in SZ-derived cells. Conclusions: Our results suggest an overall functional impairment in the PLCβ/IP(3)/Ca(2+) signaling pathway in SZ-derived hONPCs.

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