Direct observation of dynamic protein interactions involving human microtubules using solid-state NMR spectroscopy

Publication date

2020-01-02

Authors

Luo, YanzhangISNI 0000000493302699
Xiang, ShengQiISNI 0000000507893398
Hooikaas, Peter JanISNI 000000049252904X
van Bezouwen, Laura SISNI 0000000459292167
Jijumon, A S
Janke, Carsten
Förster, FriedrichORCID 0000-0002-6044-2746ISNI 0000000017448240
Akhmanova, AnnaISNI 0000000390996464
Baldus, MarcISNI 0000000139673796

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Abstract

Microtubules are important components of the eukaryotic cytoskeleton. Their structural organization is regulated by nucleotide binding and many microtubule-associated proteins (MAPs). While cryo-EM and X-ray crystallography have provided detailed views of interactions between MAPs with the microtubule lattice, little is known about how MAPs and their intrinsically disordered regions interact with the dynamic microtubule surface. NMR carries the potential to directly probe such interactions but so far has been precluded by the low tubulin yield. We present a protocol to produce [13C, 15N]-labeled, functional microtubules (MTs) from human cells for solid-state NMR studies. This approach allowed us to demonstrate that MAPs can differently modulate the fast time-scale dynamics of C-terminal tubulin tails, suggesting distinct interaction modes. Our results pave the way for in-depth NMR studies of protein dynamics involved in MT assembly and their interactions with other cellular components.

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Luo, Y, Xiang, S, Hooikaas, P J, van Bezouwen, L, Jijumon, A S, Janke, C, Förster, F, Akhmanova, A & Baldus, M 2020, 'Direct observation of dynamic protein interactions involving human microtubules using solid-state NMR spectroscopy', Nature Communications, vol. 11, no. 1, pp. 18. https://doi.org/10.1038/s41467-019-13876-x