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The 19S proteasome subunit Rpt5 reversibly associates with cold‐stable microtubules in glial cells at low temperatures

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The ubiquitin–proteasome system (UPS) degrades intracellular proteins through the 26S proteasome. We analysed how cold stress affects the UPS in glial cells. Together with a reduction in the 20S proteolytic… Click to show full abstract

The ubiquitin–proteasome system (UPS) degrades intracellular proteins through the 26S proteasome. We analysed how cold stress affects the UPS in glial cells. Together with a reduction in the 20S proteolytic activity and increased levels of polyubiquitinated proteins, exposure of glial cell cultures to cold induces a partial disassembly of the 26S proteasome. In particular, we found that Rpt5, a subunit of the 19S proteasome, relocates to cold‐stable microtubules, although no apparent cytoskeletal redistribution was detected for other analysed subunits of the 19S or 20S complexes. Furthermore, we demonstrate that both the expression of the microtubule‐associated protein MAP6 and the post‐translational acetylation of α‐tubulin modulate the association of Rpt5 with microtubules. This reversible association could be related to functional preservation of the proteolytic complex during cold stress.

Keywords: stable microtubules; 19s proteasome; subunit; glial cells; rpt5; cold stable

Journal Title: FEBS Letters
Year Published: 2022

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