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  5. Heterozygous <i>Tbk1</i> loss has opposing effects in early and late stages of ALS in mice

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Article
English
2019

Heterozygous <i>Tbk1</i> loss has opposing effects in early and late stages of ALS in mice

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English
2019
The Journal of Experimental Medicine
Vol 216 (2)
DOI: 10.1084/jem.20180729

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Akira Shizuo
Akira Shizuo

Osaka University

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Dávid Brenner
Kirsten Sieverding
Clara Bruno
+18 more

Abstract

Heterozygous loss-of-function mutations of TANK-binding kinase 1 (TBK1) cause familial ALS, yet downstream mechanisms of TBK1 mutations remained elusive. TBK1 is a pleiotropic kinase involved in the regulation of selective autophagy and inflammation. We show that heterozygous Tbk1 deletion alone does not lead to signs of motoneuron degeneration or disturbed autophagy in mice during a 200-d observation period. Surprisingly, however, hemizygous deletion of Tbk1 inversely modulates early and late disease phases in mice additionally overexpressing ALS-linked SOD1G93A, which represents a “second hit” that induces both neuroinflammation and proteostatic dysregulation. At the early stage, heterozygous Tbk1 deletion impairs autophagy in motoneurons and prepones both the clinical onset and muscular denervation in SOD1G93A/Tbk1+/− mice. At the late disease stage, however, it significantly alleviates microglial neuroinflammation, decelerates disease progression, and extends survival. Our results indicate a profound effect of TBK1 on brain inflammatory cells under pro-inflammatory conditions and point to a complex, two-edged role of TBK1 in SOD1-linked ALS.

How to cite this publication

Dávid Brenner, Kirsten Sieverding, Clara Bruno, Patrick Lüningschrör, Eva Buck, Simon Tii Mungwa, Lena Fischer, Sarah J. Brockmann, Johannes Ulmer, Corinna Bliederhäuser, Clementine Philibert, Takashi Satoh, Akira Shizuo, Séverine Boillée, Benjamin Mayer, Michael Sendtner, Albert C. Ludolph, Karin M. Danzer, Christian S. Lobsiger, Axel Freischmidt, Jochen H. Weishaupt (2019). Heterozygous <i>Tbk1</i> loss has opposing effects in early and late stages of ALS in mice. The Journal of Experimental Medicine, 216(2), pp. 267-278, DOI: 10.1084/jem.20180729.

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Publication Details

Type

Article

Year

2019

Authors

21

Datasets

0

Total Files

0

Language

English

Journal

The Journal of Experimental Medicine

DOI

10.1084/jem.20180729

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