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Published on: October 4, 2014
Drosophila Mgr, a Prefoldin subunit cooperating with von Hippel Lindau to regulate tubulin stability
Nathalie Delgehyr1, Uta Wieland, Hélène Rangone
1Department of Genetics, Cancer Research United Kingdom Cell Cycle Genetics Research Group, University of Cambridge, Cambridge CB2 3EH, United Kingdom.
Abstract:
Mutations in Drosophila merry-go-round (mgr) have been known for over two decades to lead to circular mitotic figures and loss of meiotic spindle integrity. However, the identity of its gene product has remained undiscovered. We now show that mgr encodes the Prefoldin subunit counterpart of human von Hippel Lindau binding-protein 1. Depletion of Mgr from cultured cells also leads to formation of monopolar and abnormal spindles and centrosome loss. These phenotypes are associated with reductions of tubulin levels in both mgr flies and mgr RNAi-treated cultured cells. Moreover, mgr spindle defects can be phenocopied by depleting β-tubulin, suggesting Mgr function is required for tubulin stability. Instability of β-tubulin in the mgr larval brain is less pronounced than in either mgr testes or in cultured cells. However, expression of transgenic β-tubulin in the larval brain leads to increased tubulin instability, indicating that Prefoldin might only be required when tubulins are synthesized at high levels. Mgr interacts with Drosophila von Hippel Lindau protein (Vhl). Both proteins interact with unpolymerized tubulins, suggesting they cooperate in regulating tubulin functions. Accordingly, codepletion of Vhl with Mgr gives partial rescue of tubulin instability, monopolar spindle formation, and loss of centrosomes, leading us to propose a requirement for Vhl to promote degradation of incorrectly folded tubulin in the absence of functional Prefoldin. Thus, Vhl may play a pivotal role: promoting microtubule stabilization when tubulins are correctly folded by Prefoldin and tubulin destruction when they are not.
Insights
Mutations in the merry-go-round (mgr) gene disrupt spindle integrity by affecting tubulin stability. Mgr, a Prefoldin subunit, cooperates with Vhl to regulate tubulin folding and degradation.
Area of Science:
- Cell Biology
- Genetics
- Molecular Biology
Background:
- Mutations in Drosophila merry-go-round (mgr) cause defects in cell division, including abnormal spindle formation.
- The gene product of mgr has remained elusive for over two decades.
Purpose of the Study:
- To identify the gene product of mgr.
- To elucidate the function of Mgr in maintaining spindle integrity and tubulin stability.
Main Methods:
- Genetic analysis in Drosophila.
- RNA interference (RNAi) in cultured cells.
- Protein interaction studies.
- Tubulin level quantification.
Main Results:
- mgr encodes a Prefoldin subunit.
- Mgr depletion causes spindle defects and reduced tubulin levels.
- Mgr is required for β-tubulin stability.
- Mgr interacts with Drosophila von Hippel Lindau protein (Vhl).
- Vhl promotes degradation of misfolded tubulin when Prefoldin is absent.
Conclusions:
- Mgr (Prefoldin) is essential for tubulin stability and proper spindle formation.
- Vhl plays a dual role in tubulin homeostasis, promoting stabilization or degradation based on folding status.
- Prefoldin and Vhl cooperate to ensure microtubule integrity.
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