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TDP-43 Inclusion Bodies Formed in Bacteria Are Structurally Amorphous, Non-Amyloid and Inherently Toxic to Neuroblastoma Cells

机译:细菌中形成的TDP-43包涵体在结构上是无定形的,非淀粉样的并且对神经母细胞瘤细胞具有内在毒性

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摘要

Accumulation of ubiquitin-positive, tau-and a-synuclein-negative intracellular inclusions of TDP-43 in the central nervous system represents the major hallmark correlated to amyotrophic lateral sclerosis and frontotemporal lobar degeneration with ubiquitin-positive inclusions. Such inclusions have variably been described as amorphous aggregates or more structured deposits having an amyloid structure. Following the observations that bacterial inclusion bodies generally consist of amyloid aggregates, we have overexpressed full-length TDP-43 and C-terminal TDP-43 in E. coli, purified the resulting full-length and C-terminal TDP-43 containing inclusion bodies (FL and Ct TDP-43 IBs) and subjected them to biophysical analyses to assess their structure/morphology. We show that both FL and Ct TDP-43 aggregates contained in the bacterial IBs do not bind amyloid dyes such as thioflavin T and Congo red, possess a disordered secondary structure, as inferred using circular dichroism and infrared spectroscopies, and are susceptible to proteinase K digestion, thus possessing none of the hallmarks for amyloid. Moreover, atomic force microscopy revealed an irregular structure for both types of TDP-43 IBs and confirmed the absence of amyloid-like species after proteinase K treatment. Cell biology experiments showed that FL TDP-43 IBs were able to impair the viability of cultured neuroblastoma cells when added to their extracellular medium and, more markedly, when transfected into their cytosol, where they are at least in part ubiquitinated and phosphorylated. These data reveal an inherently high propensity of TDP-43 to form amorphous aggregates, which possess, however, an inherently high ability to cause cell dysfunction. This indicates that a gain of toxic function caused by TDP-43 deposits is effective in TDP-43 pathologies, in addition to possible loss of function mechanisms originating from the cellular mistrafficking of the protein.
机译:TDP-43在中枢神经系统中的泛素阳性,tau和a-突触核蛋白阴性细胞内包裹体的积累代表了与肌萎缩性侧索硬化和额颞叶变性伴泛素阳性包裹体相关的主要标志。此类夹杂物被可变地描述为无定形聚集体或具有淀粉状结构的更多结构化的沉积物。观察到细菌包涵体通常由淀粉样蛋白聚集体组成后,我们在大肠杆菌中过表达了全长TDP-43和C端TDP-43,纯化了所得的包含全长和C端TDP-43的包涵体(FL和Ct TDP-43 IB),然后对其进行生物物理分析,以评估其结构/形态。我们显示,细菌IB中包含的FL和Ct TDP-43聚集体均不结合淀粉样染料,如硫黄素T和刚果红,具有无序的二级结构,如使用圆二色性和红外光谱法所推断,并且易受蛋白酶K的影响。消化,因此没有淀粉样蛋白的标志。此外,原子力显微镜显示两种类型的TDP-43 IBs的结构均不规则,并证实了蛋白酶K处理后不存在淀粉样蛋白。细胞生物学实验表明,将FL TDP-43 IBs添加到细胞外培养基中后,更明显地,将其转染到它们的胞质溶胶中时,它们会损害培养的神经母细胞瘤细胞的活力,在那里它们至少部分被泛素化和磷酸化。这些数据揭示了TDP-43天生具有形成无定形聚集体的高倾向,然而,其具有天生具有引起细胞功能障碍的高能力。这表明由TDP-43沉积物引起的毒性功能获得在TDP-43病理学中是有效的,除了可能是由于蛋白质的细胞误涂引起的功能机制丧失之外。

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