HAT cofactor TRRAP modulates microtubule dynamics via SP1 signaling to prevent neurodegeneration

Author:

Tapias Alicia1,Lázaro David1,Yin Bo-Kun1,Rasa Seyed Mohammad Mahdi1ORCID,Krepelova Anna1,Kelmer Sacramento Erika1,Grigaravicius Paulius1,Koch Philipp1ORCID,Kirkpatrick Joanna1,Ori Alessandro1ORCID,Neri Francesco1,Wang Zhao-Qi12ORCID

Affiliation:

1. Leibniz Institute on Aging – Fritz Lipmann Institute (FLI), Jena, Germany

2. Faculty of Biological Sciences, Friedrich-Schiller-University of Jena, Jena, Germany

Abstract

Brain homeostasis is regulated by the viability and functionality of neurons. HAT (histone acetyltransferase) and HDAC (histone deacetylase) inhibitors have been applied to treat neurological deficits in humans; yet, the epigenetic regulation in neurodegeneration remains elusive. Mutations of HAT cofactor TRRAP (transformation/transcription domain-associated protein) cause human neuropathies, including psychosis, intellectual disability, autism, and epilepsy, with unknown mechanism. Here we show that Trrap deletion in Purkinje neurons results in neurodegeneration of old mice. Integrated transcriptomics, epigenomics, and proteomics reveal that TRRAP via SP1 conducts a conserved transcriptomic program. TRRAP is required for SP1 binding at the promoter proximity of target genes, especially microtubule dynamics. The ectopic expression of Stathmin3/4 ameliorates defects of TRRAP-deficient neurons, indicating that the microtubule dynamics is particularly vulnerable to the action of SP1 activity. This study unravels a network linking three well-known, but up-to-date unconnected, signaling pathways, namely TRRAP, HAT, and SP1 with microtubule dynamics, in neuroprotection.

Funder

Leibniz Association

Publisher

eLife Sciences Publications, Ltd

Subject

General Immunology and Microbiology,General Biochemistry, Genetics and Molecular Biology,General Medicine,General Neuroscience

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