Examining the vulnerability of adult neuron subtypes to tau-mediated toxicity in Drosophila.

IF 5.8 1区 医学 Q1 PSYCHIATRY
Lovesha Sivanantharajah, Amrit Mudher, David Shepherd
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引用次数: 0

Abstract

Selective vulnerability of nerve cells is a feature of neurodegenerative disease. To date, animal models have been limited to examining pathogenic protein expression in broad or heterogeneous neuronal populations. Consequently, noted pathological hallmarks represent an average of disease phenotypes over multiple neuron types, rather than exact measures of individual responses. Here we targeted gene expression to small, precisely defined and homogenous neuronal populations in the Drosophila melanogaster central nervous system (CNS), allowing dissection of selective vulnerability of single types of neurons with single-neuron resolution. Using cellular degeneration as a readout for vulnerability, we found while all neurons were affected by tau some neuron types were more affected (vulnerable) than others (resilient). The tau-mediated pathogenic effects fell on a spectrum, demonstrating that neurons in the fly CNS are differentially vulnerable to tau pathology. Mechanistically, total tau levels did not correlate with vulnerability; rather, the best correlatives of degeneration were significant age-dependent increases in phospho-tau levels in the same neuron type, and tau mislocalisation into dendrites. Lastly, we found that tau phosphorylation in vulnerable neuron types correlated with downstream vesicular and mitochondrial trafficking defects. However, all vulnerable neuron types did not show the same pattern, suggesting multiple paths to degeneration. Beyond highlighting the heterogeneity of neuronal responses to tau in determining vulnerability, this work provides a new, high-resolution, tractable model for studying the age-dependent effects of tau, or any pathogenic protein, on postmitotic neurons with sub-cellular resolution.

神经细胞的选择性脆弱性是神经退行性疾病的一个特征。迄今为止,动物模型仅限于研究广泛或异质神经元群体中致病蛋白的表达。因此,注意到的病理特征代表了多种神经元类型的疾病表型的平均值,而不是个体反应的精确测量。在这里,我们以黑腹果蝇中枢神经系统(CNS)中小规模、精确定义和同质的神经元群为靶点进行基因表达,从而以单个神经元的分辨率剖析单一类型神经元的选择性脆弱性。利用细胞变性作为易损性的读数,我们发现虽然所有神经元都会受到 tau 的影响,但某些神经元类型受到的影响(易损性)比其他神经元类型(复原性)更大。tau介导的致病效应呈谱系分布,表明蝇类中枢神经系统中的神经元对tau病理学的易损性各不相同。从机理上讲,tau的总水平与神经元的易损性并不相关;相反,退化的最佳相关因素是同一类型神经元中磷酸化tau水平随年龄而显著增加,以及tau在树突中的错定位。最后,我们发现脆弱神经元类型中的 tau 磷酸化与下游囊泡和线粒体贩运缺陷相关。然而,所有易损神经元类型并不表现出相同的模式,这表明退化有多种途径。除了强调神经元对 tau 的反应在决定易损性方面的异质性之外,这项工作还提供了一个新的、高分辨率的、可操作的模型,用于研究 tau 或任何致病蛋白对凋亡后神经元的亚细胞分辨率的年龄依赖性影响。
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来源期刊
CiteScore
11.50
自引率
2.90%
发文量
484
审稿时长
23 weeks
期刊介绍: Psychiatry has suffered tremendously by the limited translational pipeline. Nobel laureate Julius Axelrod''s discovery in 1961 of monoamine reuptake by pre-synaptic neurons still forms the basis of contemporary antidepressant treatment. There is a grievous gap between the explosion of knowledge in neuroscience and conceptually novel treatments for our patients. Translational Psychiatry bridges this gap by fostering and highlighting the pathway from discovery to clinical applications, healthcare and global health. We view translation broadly as the full spectrum of work that marks the pathway from discovery to global health, inclusive. The steps of translation that are within the scope of Translational Psychiatry include (i) fundamental discovery, (ii) bench to bedside, (iii) bedside to clinical applications (clinical trials), (iv) translation to policy and health care guidelines, (v) assessment of health policy and usage, and (vi) global health. All areas of medical research, including — but not restricted to — molecular biology, genetics, pharmacology, imaging and epidemiology are welcome as they contribute to enhance the field of translational psychiatry.
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