A29 INVESTIGATING THE IMPACT OF PARKINSON’S DISEASE-ASSOCIATED GENES ON INTESTINAL HOMEOSTASIS

J. Pei, S. Recinto, A. MacDonald, A. Kazanova, C. Gavino, L. Trudeau, M. Desjardins, J. Stratton, S. Gruenheid
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Abstract

Abstract Background Intestinal epithelial cells (IECs) provide an essential physical barrier between harsh luminal contents and underlying host tissue. The maintenance of intestinal homeostasis must be intricately regulated through the proliferation and differentiation of intestinal stem cells (ISCs). Dysregulation of this system results in the loss of barrier function, causing pathologies in both intestinal and extra-intestinal diseases. While Parkinson’s Disease (PD) is primarily a neurodegenerative disorder, there is increasing evidence linking PD progression and gastrointestinal (GI) dysfunction. Constipation and increased bowel permeability are often observed years prior to development of motor dysfunction in PD, and people with inflammatory bowel disease are more likely to develop PD. Our group developed a model to investigate the role of the gut in PD, demonstrating that mice with genetic ablation of the PD-associated gene Pink1 exhibited motor phenotypes only when previously infected with Gram-negative Citrobacter rodentium intestinal bacteria. As Pink1 and other PD-associated genes are expressed in IECs, we hypothesize that PD-associated gene mutations directly affect the epithelium and impact early PD pathophysiology. Aims 1. Determine how Pink1 mutation affects the transcriptional profiles in IECs at steady state and in vivo C. rodentium infection. 2. Use colonoid systems to study the effect of Pink1 mutation on epithelial activity. Methods ScRNAseq was performed on IECs isolated from uninfected and infected Pink1 WT and KO mice, sacrificed at day 7 and 14 (early and peak infection) to elucidate transcriptional differences between epithelial lineages of each genotype. Additionally, colonoids were derived from primary mouse tissue and treated with lipopolysaccharide (LPS) to determine how Pink1 KO affects the inflammatory response of the epithelium. Results Our data revealed that Pink1 KO profoundly affected several epithelial lineages. ISCs from infected Pink1 KO mice had dysregulated cell cycle genes, transit amplifying cells showed dysregulated expression of tight junction genes, and enterocytes displayed dysregulation in oxidative damage and apoptotic genes. Preliminary data from colonoids showed that Pink1 KO mice, when stimulated with LPS, had altered pro-inflammatory cytokine gene expression. We are also evaluating colon motility differences between genotypes through transit time assays, counting fecal pellets per hour, and fecal water content. Conclusions In Pink1 KO IECs, there is indeed an altered cellular response upon infection, but more information is needed to decern the mechanistic role of IECs in PD. By investigating the role of PD genes in the GI tract, these studies carry important implications for understanding the initiation and progression of PD. Funding Agencies CIHR
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A29 研究帕金森病相关基因对肠道稳态的影响
摘要 背景 肠上皮细胞(IECs)在严酷的管腔内容物和底层宿主组织之间提供了重要的物理屏障。肠道平衡的维持必须通过肠道干细胞(ISCs)的增殖和分化进行复杂的调节。该系统失调会导致屏障功能丧失,引起肠内和肠外疾病。虽然帕金森病(PD)主要是一种神经退行性疾病,但越来越多的证据表明帕金森病的进展与胃肠道(GI)功能障碍有关。便秘和肠道通透性增加往往在帕金森病出现运动功能障碍前数年就已被观察到,而患有炎症性肠病的人更有可能患上帕金森病。我们的研究小组开发了一种模型来研究肠道在帕金森氏症中的作用,结果表明,帕金森氏症相关基因Pink1被基因消减的小鼠只有在先前感染了革兰氏阴性柠檬杆菌肠道细菌后才会表现出运动表型。由于 Pink1 和其他 PD 相关基因在 IECs 中表达,我们推测 PD 相关基因突变会直接影响上皮细胞,并对早期 PD 病理生理学产生影响。目的 1.确定 Pink1 基因突变如何影响 IECs 在稳态和体内 C. rodentium 感染时的转录谱。2.利用类结肠系统研究 Pink1 突变对上皮活性的影响。方法 在第 7 天和第 14 天(感染早期和感染高峰期)从未感染和感染的 Pink1 WT 小鼠和 KO 小鼠身上分离的 IECs 上进行 ScRNAseq,以阐明每种基因型的上皮细胞系之间的转录差异。此外,从小鼠原代组织中提取结肠组织并用脂多糖(LPS)处理,以确定 Pink1 KO 如何影响上皮细胞的炎症反应。结果 我们的数据显示,Pink1 KO 对多个上皮细胞系产生了深远的影响。来自感染 Pink1 KO 小鼠的 ISC 细胞周期基因失调,转运扩增细胞显示紧密连接基因表达失调,肠细胞显示氧化损伤和凋亡基因失调。来自结肠的初步数据显示,Pink1 KO 小鼠在受到 LPS 刺激时,促炎细胞因子基因的表达发生了改变。我们还在通过转运时间测定、每小时粪便颗粒计数和粪便含水量来评估不同基因型小鼠结肠运动能力的差异。结论 在 Pink1 KO IECs 中,感染后的细胞反应确实发生了改变,但要了解 IECs 在腹泻中的机制作用还需要更多信息。通过研究消化道内PD基因的作用,这些研究对了解消化道疾病的发生和发展具有重要意义。资助机构 英国皇家卫生研究院
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