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Transcriptomic profiling of early synucleinopathy in rats induced with preformed fibrils. | LitMetric

AI Article Synopsis

  • - Understanding the early phases of synucleinopathy, particularly before neurodegeneration occurs, is crucial for developing therapies and studying disease progression, as shown in a rat model that mimics Parkinson's disease pathology.
  • - In the study, researchers utilized laser capture microdissection and RNA sequencing to identify transcriptional changes in the substantia nigra, revealing that immune response-related transcripts increase while neurotransmission and dopamine pathway-related transcripts decrease during early synucleinopathy.
  • - Verification of 29 specific transcripts associated with neurotransmission and dopamine pathways was conducted and findings indicated that decreases in transcripts like Syt1 and Slc6a3 were present in neurons with pSyn inclusions, shedding light on the molecular mechanisms that may drive

Article Abstract

Examination of early phases of synucleinopathy when inclusions are present, but long before neurodegeneration occurs, is critical to both understanding disease progression and the development of disease modifying therapies. The rat alpha-synuclein (α-syn) preformed fibril (PFF) model induces synchronized synucleinopathy that recapitulates the pathological features of Parkinson's disease (PD) and can be used to study synucleinopathy progression. In this model, phosphorylated α-syn (pSyn) inclusion-containing neurons and reactive microglia (major histocompatibility complex-II immunoreactive) peak in the substantia nigra pars compacta (SNpc) months before appreciable neurodegeneration. However, it remains unclear which specific genes are driving these phenotypic changes. To identify transcriptional changes associated with early synucleinopathy, we used laser capture microdissection of the SNpc paired with RNA sequencing (RNASeq). Precision collection of the SNpc allowed for the assessment of differential transcript expression in the nigral dopamine neurons and proximal glia. Transcripts upregulated in early synucleinopathy were mainly associated with an immune response, whereas transcripts downregulated were associated with neurotransmission and the dopamine pathway. A subset of 29 transcripts associated with neurotransmission/vesicular release and the dopamine pathway were verified in a separate cohort of males and females to confirm reproducibility. Within this subset, fluorescent in situ hybridization (FISH) was used to localize decreases in the Syt1 and Slc6a3 transcripts to pSyn inclusion-containing neurons. Identification of transcriptional changes in early synucleinopathy provides insight into the molecular mechanisms driving neurodegeneration.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC10764951PMC
http://dx.doi.org/10.1038/s41531-023-00620-yDOI Listing

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