Gigaxonin is an intermediate filament (IF)-interacting partner belonging to the Kelch-like (KLHL) protein family. Gigaxonin is encoded by the KLHL16 gene, which is mutated in Giant Axonal Neuropathy (GAN). The lack of functional gigaxonin in GAN patient cells impairs IF proteostasis by affecting IF protein degradation and transport. This leads to focal abnormal accumulations of IFs and compromised cellular function, with neurons being most severely impacted. We hypothesized that gigaxonin forms molecular interactions via specific sequence motifs to regulate IF proteostasis. The goal of this study was to examine how distinct Kelch motifs on gigaxonin regulate IF protein degradation and filament morphology. We analyzed vimentin IFs in HEK293 cells overexpressing wild type (WT) gigaxonin, or gigaxonin lacking each of the six individual Kelch motifs, K1-K6. All six gigaxonin deletion mutants (ÎK1-ÎK6) promoted the degradation of soluble vimentin. Compared to WT-gigaxonin, ÎK3-gigaxonin exhibited increased soluble vimentin degradation and increased presence of thick bundles of vimentin IFs. The ÎK4 mutant showed similar, but milder phenotypes compared to ÎK3. Using mass spectrometry proteomics we found that, relative to WT gigaxonin, ÎK3 gigaxonin had increased associations with ubiquitination-associated and mitochondrial proteins but lost the association with the NudC domain-containing protein 3 (NUDCD3), a molecular chaperone enriched in the nervous system. AlphaFold modeling revealed loss of gigaxonin-NUDCD3 binding with ÎK3 and altered binding with ÎK4. Collectively, our cell biological data show the induction of an abnormal GAN-like IF phenotype in cells expressing ÎK3- and, to a lesser extent, ÎK4-gigaxonin, while our proteomic profiling links the loss of gigaxonin-NUDCD3 interactions with defective IF proteostasis.
The Kelch 3 motif on gigaxonin mediates the interaction with NUDCD3 and regulates vimentin filament morphology.
巨轴蛋白上的 Kelch 3 基序介导与 NUDCD3 的相互作用,并调节波形蛋白丝的形态
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作者:Phillips Cassandra L, So Christina, Gillis Meredith F, Harrison Jonathan, Hsu Chih-Hsuan, Armao Diane, Snider Natasha T
| 期刊: | European Journal of Cell Biology | 影响因子: | 4.300 |
| 时间: | 2025 | 起止号: | 2025 Sep;104(3):151508 |
| doi: | 10.1016/j.ejcb.2025.151508 | 靶点: | CD3 |
| 研究方向: | 免疫/内分泌 | ||
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