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TIP60/KAT5 is required for neuronal viability in hippocampal CA1. | LitMetric

AI Article Synopsis

  • Aberrant histone acetylation, particularly involving TIP60/KAT5, plays a significant role in cognitive decline and neurodegenerative diseases as observed in adult hippocampal neurons.
  • TIP60 deficiency causes rapid transcriptional dysfunction, with an increase in cell cycle and immune-related genes, while genes linked to learning and neuronal plasticity are suppressed, mirroring changes seen in other neurodegeneration models.
  • The ensuing transcriptional dysregulation leads to activation of pathways that promote neuronal loss, resulting in memory impairment, underscoring TIP60's critical importance in maintaining neuronal health and function.

Article Abstract

Aberrant histone acetylation contributes to age-dependent cognitive decline and neurodegenerative diseases. We analyze the function of lysine acetyltransferase TIP60/KAT5 in neurons of the hippocampus using an inducible mouse model. TIP60-deficiency in the adult forebrain leads within days to extensive transcriptional dysfunction characterized by the presence of a neurodegeneration-related signature in CA1. Cell cycle- and immunity-related genes are upregulated while learning- and neuronal plasticity-related genes are downregulated. The dysregulated genes seen under TIP60-deficiency overlap with those in the well-characterized CK-p25 neurodegeneration model. We found that H4K12 is hypoacetylated at the transcriptional start sites of those genes whose expression is dampened in TIP60-deficient mice. Transcriptional dysregulation is followed over a period of weeks by activation of Caspase 3 and fragmentation of β-actin in CA1 neurites, eventually leading to severe neuronal loss. TIP60-deficient mice also develop mild memory impairment. These phenotypes point to a central role of TIP60 in transcriptional networks that are critical for neuronal viability.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC6838100PMC
http://dx.doi.org/10.1038/s41598-019-50927-1DOI Listing

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