首页> 美国卫生研究院文献>The Journal of Biological Chemistry >A Two-hit Hypothesis for Inclusion Formation by Carboxyl-terminal Fragments of TDP-43 Protein Linked to RNA Depletion and Impaired Microtubule-dependent Transport
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A Two-hit Hypothesis for Inclusion Formation by Carboxyl-terminal Fragments of TDP-43 Protein Linked to RNA Depletion and Impaired Microtubule-dependent Transport

机译:TDP-43蛋白的羧基末端片段与RNA耗竭和微管依赖运输受损联系起来的包裹体形成的两次打击假说。

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摘要

Carboxyl-terminal fragments (CTFs) of TDP-43 aggregate to form the diagnostic signature inclusions of frontotemporal lobar degeneration and amyotrophic lateral sclerosis, but the biological significance of these CTFs and how they are generated remain enigmatic. To address these issues, we engineered mammalian cells with an inducible tobacco etch virus (TEV) protease that cleaves TDP-43 containing a TEV cleavage site. Regions of TDP-43 flanking the second RNA recognition motif (RRM2) are efficiently cleaved by TEV, whereas sites within this domain are more resistant to cleavage. CTFs containing RRM2 generated from de novo cleavage of nuclear TDP-43 are transported to the cytoplasm and efficiently cleared, indicating that cleavage alone is not sufficient to initiate CTF aggregation. However, CTFs rapidly aggregated into stable cytoplasmic inclusions following de novo cleavage when dynein-mediated microtubule transport was disrupted, RNA was depleted, or natively misfolded CTFs were introduced into these cells. Our data support a “two-hit” mechanism of CTF aggregation dependent on TDP-43 cleavage.
机译:TDP-43的羧基末端片段(CTF)聚集形成额颞叶变性和肌萎缩性侧索硬化症的诊断标志性包裹体,但这些CTF的生物学意义及其产生方式仍然是个谜。为了解决这些问题,我们用诱导型烟草蚀刻病毒(TEV)蛋白酶工程改造了哺乳动物细胞,该蛋白酶可切割含有TEV切割位点的TDP-43。 TEV-43位于第二个RNA识别基序(RRM2)两侧的区域可被TEV有效切割,而该结构域内的位点则更抗切割。从核TDP-43的从头裂解产生的含有RRM2的CTF被转运到细胞质并被有效清除,表明仅裂解不足以引发CTF聚集。然而,当通过动力蛋白介导的微管运输被破坏,RNA被耗尽或天然错误折叠的CTF被引入这些细胞时,从头裂解后CTF迅速聚集为稳定的细胞质内含物。我们的数据支持依赖TDP-43裂解的CTF聚集的“两次打击”机制。

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