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Neuronal dystonin isoform 2 is a mediator of endoplasmic reticulum structure and function

机译:神经元张力调节蛋白亚型2是内质网结构和功能的介体

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Dystonin/Bpag1 is a cytoskeletal linker protein whose loss of function in dystonia musculorum ( dt ) mice results in hereditary sensory neuropathy. Although loss of expression of neuronal dystonin isoforms (dystonin-a1/dystonin-a2) is sufficient to cause dt pathogenesis, the diverging function of each isoform and what pathological mechanisms are activated upon their loss remains unclear. Here we show that dt27 mice manifest ultrastructural defects at the endoplasmic reticulum (ER) in sensory neurons corresponding to in vivo induction of ER stress proteins. ER stress subsequently leads to sensory neurodegeneration through induction of a proapoptotic caspase cascade. dt sensory neurons display neurodegenerative pathologies, including Ca2+ dyshomeostasis, unfolded protein response (UPR) induction, caspase activation, and apoptosis. Isoform-specific loss-of-function analysis attributes these neurodegenerative pathologies to specific loss of dystonin-a2. Inhibition of either UPR or caspase signaling promotes the viability of cells deficient in dystonin. This study provides insight into the mechanism of dt neuropathology and proposes a role for dystonin-a2 as a mediator of normal ER structure and function.
机译:Dystonin / Bpag1是一种细胞骨架连接蛋白,在肌张力障碍(dt)小鼠中功能丧失会导致遗传性感觉神经病。尽管神经元肌张力蛋白同工型(dystonin-a1 / dystonin-a2)的表达丧失足以引起dt发病机制,但每种亚型的发散功能以及其丧失后激活的病理机制仍不清楚。在这里,我们显示dt 27 小鼠在感觉神经元的内质网(ER)内表现出超微结构缺陷,与体内ER应激蛋白的诱导相对应。内质网应激随后通过诱导凋亡的半胱天冬酶级联反应导致感觉神经变性。 dt感觉神经元表现出神经退行性病变,包括Ca 2 + 动态平衡,未折叠蛋白反应(UPR)诱导,胱天蛋白酶激活和凋亡。亚型特异性功能丧失分析将这些神经退行性病变归因于张力素-a2的特异性丧失。 UPR或caspase信号转导的抑制促进了肌张力障碍蛋白不足的细胞的活力。这项研究提供了对dt神经病理学机制的见解,并提出了dystonin-a2作为正常ER结构和功能的介质的作用。

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