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Updated: Feb 23, 2026

Bimolecular Fluorescence Complementation
Published on: April 15, 2011
The B-box module of CYLD is responsible for its intermolecular interaction and cytoplasmic localization
Songbo Xie1, Miao Chen1, Siqi Gao2
1Institute of Biomedical Sciences, College of Life Sciences, Key Laboratory of Animal Resistance Biology of Shandong Province, Shandong Normal University, Jinan 250014, China.
Insights
The cylindromatosis (CYLD) protein
Area of Science:
- Molecular biology
- Cell biology
- Biochemistry
Background:
- The tumor suppressor protein cylindromatosis (CYLD) is a microtubule-associated deubiquitinase involved in crucial cellular processes.
- CYLD possesses a unique ubiquitin specific protease (USP) domain containing a zinc-binding B-box, whose function is not well understood.
Purpose of the Study:
- To elucidate the role of the B-box module within the USP domain of CYLD.
- To investigate how the B-box influences CYLD's intermolecular interactions and subcellular localization.
Main Methods:
- Co-immunoprecipitation assays to detect CYLD complex formation.
- Native gel electrophoresis and pull-down assays to assess protein interactions.
- Analysis of CYLD mutants lacking the B-box to evaluate its functional impact.
Main Results:
- CYLD forms intermolecular complexes, with the USP domain being essential for this interaction.
- Deletion of the B-box disrupts CYLD's intermolecular assembly.
- Loss of the B-box impairs CYLD's cytoplasmic localization without affecting its deubiquitinase activity.
Conclusions:
- The B-box module is critical for CYLD's self-assembly and proper subcellular distribution.
- These findings suggest the B-box plays a key role in regulating CYLD's function in various biological processes.
Abstract:
The tumor suppressor protein cylindromatosis (CYLD), as a microtubule-associated deubiquitinase, plays a pivotal role in a wide range of cellular activities, including innate immunity, cell division, and ciliogenesis. Structural characterization reveals a small zinc-binding B-box inserted within the ubiquitin specific protease (USP) domain of CYLD; however, the exact role for this module remains yet to be elucidated. Here we identify a critical role for the B-box in facilitating the intermolecular interaction and subcellular localization of CYLD. By co-immunoprecipitation assays we uncover that CYLD has the ability to form an intermolecular complex. Native gel electrophoresis analysis and pull down assays show that the USP domain of CYLD is essential for its intermolecular interaction. Further investigation reveals that deletion of the B-box from the USP domain disrupts the intermolecular interaction of CYLD. Importantly, although loss of the B-box has no obvious effect on the deubiquitinase activity of CYLD, it abolishes the USP domain-mediated retention of CYLD in the cytoplasm. Collectively, these data demonstrate an important role for the B-box module of CYLD in mediating its assembly and subcellular distribution, which might be related to the functions of CYLD in various biological processes.
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