Zn²+-induced rearrangement of the disordered TPPP/p25 affects its microtubule assembly and GTPase activity
Ágnes Zotter1, Judit Oláh, Emma Hlavanda
1Institute of Enzymology, Biological Research Center, Hungarian Academy of Sciences, H-1113 Budapest, Hungary.
Abstract:
Tubulin polymerization promoting protein/p25 (TPPP/p25) modulates the dynamics and stability of the microtubule system and plays crucial role in the myelination of oligodendrocytes. Here we showed by CD, fluorescence, and NMR spectroscopies that Zn(2+) is the first ligand that induces considerable rearrangement of the disordered TPPP/p25. Zinc finger motif (His(2)Cys(2)) (His(61)-Cys(83)) was identified within the flexible region of TPPP/p25 straddled by extended unstructured N- and C-terminal regions. The specific binding of the Zn(2+) to TPPP/p25 induced the formation of molten globule but not that of a well-defined tertiary structure. The Zn(2+)-induced partially folded structure accommodating the zinc binding motif is localized at the single Trp(76)-containing region as demonstrated by fluorescence resonance energy transfer and quenching experiments. We showed that the Zn(2+)-induced change in the TPPP/p25 structure modified its interaction with tubulin and GTP coupled with functional consequences: the TPPP/p25-promoted tubulin polymerization was increased while the TPPP/p25-catalyzed GTPase activity was decreased as detected by turbidimetry and by malachite green phosphate release/(31)P NMR assays, respectively. The finding that the Zn(2+) of the bivalent cations can uniquely influence physiological relavant interactions significantly contributes to our understanding of the role of Zn(2+)-related TPPP/p25 processes in the differentiation/myelination of oligodendrocytes possessing a high-affinity Zn(2+) uptake mechanism.
Insights
Zinc (Zn2+) binding to Tubulin Polymerization Promoting Protein/p25 (TPPP/p25) induces a partially folded structure. This structural change enhances TPPP/p25’s interaction with tubulin, boosting polymerization while decreasing GTPase activity.
Area of Science:
- Biochemistry
- Cell Biology
- Neuroscience
Background:
- Tubulin polymerization promoting protein/p25 (TPPP/p25) is vital for microtubule dynamics and oligodendrocyte myelination.
- Oligodendrocytes possess a high-affinity zinc (Zn2+) uptake mechanism, suggesting a role for zinc in their function.
Purpose of the Study:
- To investigate the structural and functional effects of Zn2+ binding on TPPP/p25.
- To elucidate the role of Zn2+-TPPP/p25 interactions in oligodendrocyte differentiation and myelination.
Main Methods:
- Circular Dichroism (CD) spectroscopy
- Fluorescence spectroscopy
- Nuclear Magnetic Resonance (NMR) spectroscopy
- Fluorescence Resonance Energy Transfer (FRET)
- Turbidimetry
- Malachite green phosphate release assay
Main Results:
- Zn2+ binding induces a molten globule state in TPPP/p25, involving a His(61)-Cys(83) zinc finger motif.
- The Zn2+-induced structure localizes to the Trp(76) region, confirmed by FRET and quenching.
- Zn2+ enhances TPPP/p25-promoted tubulin polymerization but decreases its GTPase activity.
Conclusions:
- Zn2+ uniquely influences TPPP/p25 structure and function, impacting tubulin interactions.
- These findings contribute to understanding Zn2+-related TPPP/p25 roles in oligodendrocyte differentiation and myelination.
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