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Updated: Feb 27, 2026

Simultaneous Measurement of HDAC1 and HDAC6 Activity in HeLa Cells Using UHPLC-MS
Published on: August 10, 2017
Inhibition of HDAC6 activity through interaction with RanBPM and its associated CTLH complex
Louisa M Salemi1, Matthew E R Maitland1, Eyal R Yefet1
1Robarts Research Institute and Department of Biochemistry, Schulich School of Medicine & Dentistry, The University of Western Ontario, 1151 Richmond Street North, London, ON, N6A 5B7, Canada.
Background:
Histone deacetylase 6 (HDAC6) is a microtubule-associated deacetylase that promotes many cellular processes that lead to cell transformation and tumour development. We previously documented an interaction between Ran-Binding Protein M (RanBPM) and HDAC6 and found that RanBPM expression inhibits HDAC6 activity. RanBPM is part of a putative E3 ubiquitin ligase complex, termed the C-terminal to LisH (CTLH) complex. Here, we investigated the involvement of the CTLH complex on HDAC6 inhibition and assessed the outcome of this regulation on the cellular motility induced by HDAC6.
Methods:
Cell lines (Hela, HEK293 and immortalized mouse embryonic fibroblasts) stably or transiently downregulated for several components of the CTLH complex were employed for the assays used in this study. Interactions of HDAC6, RanBPM and muskelin were assessed by co-immunoprecipitations. Quantifications of western blot analyses were employed to evaluate acetylated α-tubulin levels. Confocal microscopy analyses were used to determine microtubule association of HDAC6 and CTLH complex members. Cell migration was evaluated using wound healing assays.
Results:
We demonstrate that RanBPM-mediated inhibition of HDAC6 is dependent on its association with HDAC6. We show that, while HDAC6 does not require RanBPM to associate with microtubules, RanBPM association with microtubules requires HDAC6. Additionally, we show that Twa1 (Two-hybrid-associated protein 1 with RanBPM) and MAEA (Macrophage Erythroblast Attacher), two CTLH complex members, also associate with α-tubulin and that muskelin, another component of the CTLH complex, is able to associate with HDAC6. Downregulation of CTLH complex members muskelin and Rmnd5A (Required for meiotic nuclear division homolog A) resulted in decreased acetylation of HDAC6 substrate α-tubulin. Finally, we demonstrate that the increased cell migration resulting from downregulation of RanBPM is due to the relief in inhibition of HDAC6 α-tubulin deacetylase activity.
Conclusions:
Our work shows that RanBPM, together with the CTLH complex, associates with HDAC6 and restricts cell migration through inhibition of HDAC6 activity. This study uncovers a novel function for the CTLH complex and suggests that it could have a tumour suppressive role in restricting HDAC6 oncogenic properties.
Insights
Ran-Binding Protein M (RanBPM) and the C-terminal to LisH (CTLH) complex inhibit histone deacetylase 6 (HDAC6) activity. This interaction restricts cancer cell migration by controlling HDAC6
Area of Science:
- Molecular Biology
- Cell Biology
- Biochemistry
Background:
- Histone deacetylase 6 (HDAC6) is a microtubule-associated deacetylase implicated in cell transformation and tumor development.
- Ran-Binding Protein M (RanBPM) interacts with HDAC6 and inhibits its activity, functioning as part of the C-terminal to LisH (CTLH) complex.
- The precise role of the CTLH complex in regulating HDAC6 activity and its impact on cellular processes like motility remained unclear.
Purpose of the Study:
- To investigate the involvement of the CTLH complex in HDAC6 inhibition.
- To assess how CTLH-mediated regulation of HDAC6 affects cellular motility.
- To elucidate the molecular mechanisms underlying the interaction between RanBPM, CTLH complex, and HDAC6.
Main Methods:
- Utilized cell lines (Hela, HEK293, mouse embryonic fibroblasts) with downregulated CTLH complex components.
- Employed co-immunoprecipitation to assess interactions between HDAC6, RanBPM, and muskelin.
- Quantified acetylated α-tubulin levels via western blot and analyzed microtubule association using confocal microscopy and cell migration via wound healing assays.
Main Results:
- RanBPM-mediated HDAC6 inhibition is dependent on their direct association; RanBPM requires HDAC6 for microtubule association.
- CTLH complex members Twa1 and MAEA associate with α-tubulin, while muskelin interacts with HDAC6.
- Downregulation of muskelin and Rmnd5A reduced α-tubulin acetylation, and increased cell migration upon RanBPM downregulation resulted from relieved HDAC6 inhibition.
Conclusions:
- RanBPM and the CTLH complex collaborate to inhibit HDAC6 activity, thereby restricting cell migration.
- This study reveals a novel tumor-suppressive function for the CTLH complex in limiting the oncogenic properties of HDAC6.
- The findings highlight a new regulatory pathway involving the CTLH complex, RanBPM, and HDAC6 in controlling cell motility and potentially cancer progression.
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