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VCP/TER94功能丧失会导致神经退行性变。

Loss of function of VCP/TER94 causes neurodegeneration.

作者信息

Tsumaki Kohei, Bertens Christian J F, Nakayama Minoru, Kato Saya, Jonao Yuki, Kuribayashi Ayu, Sato Konosuke, Ishiyama Shota, Asakawa Momoko, Aihara Riko, Yoshioka Yuki, Homma Hidenori, Tanaka Hikari, Fujita Kyota, Okazawa Hitoshi, Sone Masaki

机构信息

Department of Biomolecular Science, Faculty of Science, Toho University, Chiba 274-8510, Japan.

University Eye Clinic Maastricht, School for Mental Health and Neuroscience (MHeNs), Maastricht University, 6202AZ Maastricht, The Netherlands.

出版信息

Dis Model Mech. 2024 Dec 1;17(12). doi: 10.1242/dmm.050359. Epub 2024 Dec 23.

Abstract

Variants in several genes are linked to human frontotemporal lobar degeneration (FTLD) associated with TDP43- and/or ubiquitin-positive inclusions. However, it is not yet clear whether the underlying mechanism is a gain-of-function or a loss-of-function one. To answer this question, we used Drosophila expressing double-stranded RNA against the FTLD-associated gene TER94 (an ortholog of VCP/p97) and found that the knockdown (KD) of this gene caused premature lethality, reduction in brain volume and alterations in the morphology of mushroom bodies. The changes caused by TER94 KD were rescued by wild-type TER94 but not by the human disease-linked A229E mutant, indicating that this mutant causes loss of function. Alterations were also observed in pupal brains and were partially rescued by co-expression of Mcm2, which is involved in control of the cell cycle, suggesting that dysregulation of neuronal proliferation caused the phenotypes. TER94 KD also caused the disappearance of TBPH (an ortholog of TDP43/TARDBP) from nuclei. These data from Drosophila genetics suggest that VCP-linked FTLD is caused by loss-of-function of VCP.

摘要

几个基因的变异与与TDP43和/或泛素阳性包涵体相关的人类额颞叶变性(FTLD)有关。然而,其潜在机制是功能获得还是功能丧失尚不清楚。为了回答这个问题,我们使用了针对与FTLD相关的基因TER94(VCP/p97的直系同源基因)表达双链RNA的果蝇,发现该基因的敲低(KD)导致过早死亡、脑体积减小和蘑菇体形态改变。TER94 KD引起的变化可被野生型TER94挽救,但不能被与人类疾病相关的A229E突变体挽救,这表明该突变体导致功能丧失。在蛹脑中也观察到了变化,并且通过共表达参与细胞周期控制的Mcm2部分挽救了这些变化,这表明神经元增殖失调导致了这些表型。TER94 KD还导致TBPH(TDP43/TARDBP的直系同源基因)从细胞核中消失。这些来自果蝇遗传学的数据表明,与VCP相关联的FTLD是由VCP的功能丧失引起的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/daf6/11698056/cee53d7bda4e/dmm-17-050359-g1.jpg

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