Dysregulation of ribosome-associated quality control elicits cognitive disorders via overaccumulation of TTC3.
basic_science · Level V
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- Record sourced from PubMed, PMID 36917672.
- Also identified by DOI 10.1073/pnas.2211522120 and PMC identifier 10041068.
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Abstract
Ribosome-associated quality control (RQC) pathway is responsible for degradation of nascent polypeptides in aberrantly stalled ribosomes, and its defects may lead to neurological diseases. However, the underlying molecular mechanism of how RQC dysfunction elicits neurological disorders remains poorly understood. Here we revealed that neurons with knockout (KO) of ubiquitin ligase LTN1, a key gene in the RQC pathway, show developmental defects in neurons via upregulation of TTC3 and UFMylation signaling proteins. The abnormally enhanced TTC3 protein in <i>Ltn1</i> KO neurons reduced further accumulation of translationally arrested products by preventing translation initiation of selective genes. However, the overaccumulated TTC3 protein in turn caused dendritic abnormalities and reduced surface-localized GABA<sub>A</sub> receptors during neuronal development. <i>Ltn1</i> KO mice showed behavioral deficits associated with cognitive disorders, a subset of which were restored by TTC3 knockdown in medial prefrontal cortex. Together, the overactivated cellular compensatory mechanism against defective RQC through TTC3 overaccumulation induced synaptic and cognitive deficits. More broadly, these findings represent a novel cellular mechanism underlying neuronal dysfunctions triggered by exaggerated cellular stress response to accumulated abnormal translation products in neurons.
Medical subject headings
- Cognitive Dysfunction
- Ribosomes
- Ubiquitin-Protein Ligases