Postsynaptic adaptations in direct pathway muscarinic M4-receptor signaling follow the temporal and regional pattern of dopaminergic degeneration

IF 8.2 1区 医学 Q1 NEUROSCIENCES
Beatriz E. Nielsen, Christopher P. Ford
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引用次数: 0

Abstract

In Parkinson’s disease (PD), imbalances in dorsal striatum pathways are thought to lead to motor dysfunction due to loss of dopamine (DA) and the disruption of coordinated modulation with acetylcholine (ACh). Here, we examined changes in cholinergic modulation of striatal direct pathway medium spiny neurons (dMSNs) in mice that were partially or completely depleted of DA, to model early and advanced stages of PD. We found a reduction in muscarinic M4 receptor signaling in the dorsolateral striatum (DLS) following partial DA loss of DA, which was not evident in the dorsomedial region (DMS) until DA loss was nearly complete. This decrease resulted from reduced postsynaptic M4 receptor function, as ACh release or clearance was unaffected, and could not be rescued by L-DOPA. These findings reveal how changes in cholinergic modulation follow the temporal and regional pattern of dopaminergic degeneration, which is critical for understanding their shared role in PD progression.

Abstract Image

直接通路毒蕈碱m4受体信号的突触后适应遵循多巴胺能变性的时间和区域模式
在帕金森病(PD)中,背纹状体通路的不平衡被认为是由于多巴胺(DA)的丧失和乙酰胆碱(ACh)协调调节的破坏而导致运动功能障碍。在这里,我们研究了部分或完全缺乏DA的小鼠纹状体直接通路中棘神经元(dMSNs)胆碱能调节的变化,以模拟帕金森病的早期和晚期。我们发现,在DA部分丧失后,背外侧纹状体(DLS)的毒毒碱M4受体信号减少,直到DA几乎完全丧失,这在背内侧纹状体(DMS)中并不明显。这种减少是由于突触后M4受体功能的减少,因为ACh的释放或清除不受影响,并且不能被左旋多巴拯救。这些发现揭示了胆碱能调节的变化如何遵循多巴胺能变性的时间和区域模式,这对于理解它们在PD进展中的共同作用至关重要。
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来源期刊
NPJ Parkinson's Disease
NPJ Parkinson's Disease Medicine-Neurology (clinical)
CiteScore
9.80
自引率
5.70%
发文量
156
审稿时长
11 weeks
期刊介绍: npj Parkinson's Disease is a comprehensive open access journal that covers a wide range of research areas related to Parkinson's disease. It publishes original studies in basic science, translational research, and clinical investigations. The journal is dedicated to advancing our understanding of Parkinson's disease by exploring various aspects such as anatomy, etiology, genetics, cellular and molecular physiology, neurophysiology, epidemiology, and therapeutic development. By providing free and immediate access to the scientific and Parkinson's disease community, npj Parkinson's Disease promotes collaboration and knowledge sharing among researchers and healthcare professionals.
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