Kathryn E. Reynolds, Matthew Napier, Fan Fei, Kirk Green, Angela L. Scott
{"title":"Dysregulated Purinergic Signalling in Fragile X Syndrome Cortical Astrocytes","authors":"Kathryn E. Reynolds, Matthew Napier, Fan Fei, Kirk Green, Angela L. Scott","doi":"10.1007/s12017-024-08802-4","DOIUrl":null,"url":null,"abstract":"<p>The symptoms of fragile X syndrome (FXS), caused by a single gene mutation to <i>Fmr1</i>, have been increasingly linked to disordered astrocyte signalling within the cerebral cortex. We have recently demonstrated that the purinergic signalling pathway, which utilizes nucleoside triphosphates and their metabolites to facilitate bidirectional glial and glial-neuronal interactions, is upregulated in cortical astrocytes derived from the <i>Fmr1</i> knockout (KO) mouse model of FXS. Heightened <i>Fmr1</i> KO P2Y purinergic receptor levels were correlated with prolonged intracellular calcium release, elevated synaptogenic protein secretion, and hyperactivity of developing circuits. However, due to the relative lack of sensitive and reproducible quantification methods available for measuring purines and pyrimidines, determining the abundance of these factors in <i>Fmr1</i> KO astrocytes was limited. We therefore developed a hydrophilic interaction liquid chromatography protocol coupled with mass spectrometry to compare the abundance of intracellular and extracellular purinergic molecules between wildtype and <i>Fmr1</i> KO mouse astrocytes. Significant differences in the concentrations of UDP, ATP, AMP, and adenosine intracellular stores were found within <i>Fmr1</i> KO astrocytes relative to WT. The extracellular level of adenosine was also significantly elevated in <i>Fmr1</i> KO astrocyte-conditioned media in comparison to media collected from WT astrocytes. Glycosylation of the astrocyte membrane-bound CD39 ectonucleotidase, which facilitates ligand breakdown following synaptic release, was also elevated in <i>Fmr1</i> KO astrocyte cultures. Together, these differences demonstrated further dysregulation of the purinergic signalling system within <i>Fmr1</i> KO cortical astrocytes, potentially leading to significant alterations in FXS purinergic receptor activation and cellular pathology.</p>","PeriodicalId":3,"journal":{"name":"ACS Applied Electronic Materials","volume":null,"pages":null},"PeriodicalIF":4.3000,"publicationDate":"2024-09-10","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"0","resultStr":null,"platform":"Semanticscholar","paperid":null,"PeriodicalName":"ACS Applied Electronic Materials","FirstCategoryId":"3","ListUrlMain":"https://doi.org/10.1007/s12017-024-08802-4","RegionNum":3,"RegionCategory":"材料科学","ArticlePicture":[],"TitleCN":null,"AbstractTextCN":null,"PMCID":null,"EPubDate":"","PubModel":"","JCR":"Q1","JCRName":"ENGINEERING, ELECTRICAL & ELECTRONIC","Score":null,"Total":0}
引用次数: 0
Abstract
The symptoms of fragile X syndrome (FXS), caused by a single gene mutation to Fmr1, have been increasingly linked to disordered astrocyte signalling within the cerebral cortex. We have recently demonstrated that the purinergic signalling pathway, which utilizes nucleoside triphosphates and their metabolites to facilitate bidirectional glial and glial-neuronal interactions, is upregulated in cortical astrocytes derived from the Fmr1 knockout (KO) mouse model of FXS. Heightened Fmr1 KO P2Y purinergic receptor levels were correlated with prolonged intracellular calcium release, elevated synaptogenic protein secretion, and hyperactivity of developing circuits. However, due to the relative lack of sensitive and reproducible quantification methods available for measuring purines and pyrimidines, determining the abundance of these factors in Fmr1 KO astrocytes was limited. We therefore developed a hydrophilic interaction liquid chromatography protocol coupled with mass spectrometry to compare the abundance of intracellular and extracellular purinergic molecules between wildtype and Fmr1 KO mouse astrocytes. Significant differences in the concentrations of UDP, ATP, AMP, and adenosine intracellular stores were found within Fmr1 KO astrocytes relative to WT. The extracellular level of adenosine was also significantly elevated in Fmr1 KO astrocyte-conditioned media in comparison to media collected from WT astrocytes. Glycosylation of the astrocyte membrane-bound CD39 ectonucleotidase, which facilitates ligand breakdown following synaptic release, was also elevated in Fmr1 KO astrocyte cultures. Together, these differences demonstrated further dysregulation of the purinergic signalling system within Fmr1 KO cortical astrocytes, potentially leading to significant alterations in FXS purinergic receptor activation and cellular pathology.
脆性 X 综合征(FXS)是由 Fmr1 单基因突变引起的,其症状越来越多地与大脑皮层内星形胶质细胞信号紊乱有关。我们最近证实,嘌呤能信号通路利用核苷三磷酸及其代谢产物促进神经胶质和神经胶质-神经元之间的双向相互作用,这种信号通路在 Fmr1 基因敲除(KO)的 FXS 小鼠皮质星形胶质细胞中上调。Fmr1 KO P2Y嘌呤能受体水平的升高与细胞内钙释放时间延长、突触生成蛋白分泌增加以及发育中回路的过度活跃有关。然而,由于测量嘌呤和嘧啶的灵敏度和可重复性量化方法相对缺乏,确定这些因子在 Fmr1 KO 星形胶质细胞中的丰度受到了限制。因此,我们开发了一种亲水相互作用液相色谱法,并结合质谱法来比较野生型和 Fmr1 KO 小鼠星形胶质细胞中细胞内和细胞外嘌呤能分子的丰度。与 WT 相比,Fmr1 KO 星形胶质细胞内 UDP、ATP、AMP 和腺苷的浓度存在显著差异。与收集自 WT 星形胶质细胞的培养基相比,Fmr1 KO 星形胶质细胞调节培养基中的胞外腺苷水平也明显升高。在 Fmr1 KO 星形胶质细胞培养物中,与星形胶质细胞膜结合的 CD39 外切核苷酸酶的糖基化也升高了,而 CD39 外切核苷酸酶可在突触释放后促进配体分解。这些差异共同表明,Fmr1 KO 大脑皮层星形胶质细胞内的嘌呤能信号系统进一步失调,可能导致 FXS 嘌呤能受体激活和细胞病理学的重大改变。