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Ubiquitin Accumulation on Disease Associated Protein Aggregates Is Correlated with Nuclear Ubiquitin Depletion Histone De-Ubiquitination and Impaired DNA Damage Response

机译:疾病相关蛋白聚集体上的泛素积累与核泛素消耗组蛋白去泛素化和受损的DNA损伤反应相关

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摘要

Deposition of ubiquitin conjugates on inclusion bodies composed of protein aggregates is a definitive cytopathological hallmark of neurodegenerative diseases. We show that accumulation of ubiquitin on polyQ IB, associated with Huntington’s disease, is correlated with extensive depletion of nuclear ubiquitin and histone de-ubiquitination. Histone ubiquitination plays major roles in chromatin regulation and DNA repair. Accordingly, we observe that cells expressing IB fail to respond to radiomimetic DNA damage, to induce gamma-H2AX phosphorylation and to recruit 53BP1 to damaged foci. Interestingly ubiquitin depletion, histone de-ubiquitination and impaired DNA damage response are not restricted to PolyQ aggregates and are associated with artificial aggregating luciferase mutants. The longevity of brain neurons depends on their capacity to respond to and repair extensive ongoing DNA damage. Impaired DNA damage response, even modest one, could thus lead to premature neuron aging and mortality.
机译:泛素缀合物在包含蛋白质聚集体的包涵体上的沉积是神经退行性疾病的明确细胞病理学标志。我们表明,与亨廷顿舞蹈病相关的polyQ IB上泛素的积累与核泛素的大量消耗和组蛋白去泛素化有关。组蛋白泛素化在染色质调节和DNA修复中起主要作用。因此,我们观察到表达IB的细胞无法响应放射模拟的DNA损伤,无法诱导gamma-H2AX磷酸化并募集53BP1到受损灶。有趣的是,泛素耗竭,组蛋白去泛素化和DNA损伤反应受损不仅限于PolyQ聚集体,而且与人工聚集的萤光素酶突变体有关。脑神经元的寿命取决于其对广泛的正在进行的DNA损伤作出反应和修复的能力。受损的DNA损伤反应,即使是适度的损伤,也可能导致神经元过早衰老和死亡。

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