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首页> 外文期刊>Molecular and cellular neurosciences >Transcript expression levels of full-length alpha-synuclein and its three alternatively spliced variants in Parkinson's disease brain regions and in a transgenic mouse model of alpha-synuclein overexpression
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Transcript expression levels of full-length alpha-synuclein and its three alternatively spliced variants in Parkinson's disease brain regions and in a transgenic mouse model of alpha-synuclein overexpression

机译:帕金森氏病脑区和α-突触核蛋白过表达的转基因小鼠模型中的全长α-突触核蛋白及其三个剪接变体的转录表达水平

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摘要

Alternative splicing is a complex post-transcriptional process that can be regulated by cis-acting elements located within genomic non-coding regions. Recent studies have identified that polymorphic variations in non-coding regions of the α-synuclein gene (SNCA) locus are associated with an increased risk for developing Parkinson's disease (PD). The underlying mechanism(s) for this susceptibility may involve changes in α-synuclein mRNA expression and alternative splicing. As a first step towards understanding the biology of α-synuclein splice variants in PD, we characterized the levels of the full-length SNCA-140 mRNA transcript and SNCA-126, -112, and -98 alternatively spliced variants in different neuronal regions from PD patients or transgenic mice overexpressing human α-synuclein (ASO). In human post-mortem tissue, α-synuclein spliced transcripts were expressed in a region-specific manner in the cortex, substantia nigra, and cerebellum. We observed increased nigral SNCA-140 and SNCA-126 transcript levels in PD patients when compared to neurologically unaffected cases. Human α-synuclein splicing changes were also found to occur in a region-specific manner in ASO mice. Here, SNCA-126, -112, and -98 transcript levels did not increase proportionally with SNCA-140 levels, or parallel the region-specific mouse transcript ratios seen in wild-type (WT) littermates. While most transcripts were elevated in ASO mice when compared to WT mice, the most prominent increase was found in the ventral midbrain of 15-month-old ASO mice. These results demonstrate region-specific human α-synuclein transcript level abnormalities in PD patients and in a transgenic mouse model of α-synucleinopathy. This study is relevant to understanding the normal, adaptive, or pathological role(s) of α-synuclein splice variants.
机译:选择性剪接是一个复杂的转录后过程,可由位于基因组非编码区内的顺式作用元件调节。最近的研究已经确定,α-突触核蛋白基因(SNCA)基因座非编码区的多态性变异与患帕金森氏病(PD)的风险增加有关。这种敏感性的潜在机制可能涉及α-突触核蛋白mRNA表达的变化和选择性剪接。作为了解PD中α-突触核蛋白剪接变体生物学的第一步,我们表征了来自不同神经元区域的全长SNCA-140 mRNA转录本和SNCA-126,-112和-98交替剪接变体的水平PD患者或过表达人α-突触核蛋白(ASO)的转基因小鼠。在人体验尸组织中,α-突触核蛋白剪接的转录本在皮层,黑质和小脑中以区域特异性方式表达。与未受神经系统影响的病例相比,我们观察到PD患者的黑色SNCA-140和SNCA-126转录水平增加。还发现人α-突触核蛋白的剪接变化在ASO小鼠中以区域特异性方式发生。在这里,SNCA-126,-112和-98的转录水平并未与SNCA-140的水平成比例地增加,或与野生型(WT)同窝幼仔中所见的区域特异性小鼠转录物的比例不平行。虽然与WT小鼠相比,ASO小鼠中的大多数转录物都升高了,但最显着的增加是在15个月大的ASO小鼠的腹中脑中。这些结果证明了PD患者和α-突触核蛋白病的转基因小鼠模型中区域特异性人α-突触核蛋白的转录水平异常。这项研究与了解α-突触核蛋白剪接变体的正常,适应性或病理性作用有关。

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