Nanoscopic Structural Fluctuations of Disassembling Microtubules Revealed by Label-Free Super-Resolution Microscopy
Jazyk angličtina Země Německo Médium print-electronic
Typ dokumentu časopisecké články, práce podpořená grantem
Grantová podpora
LL1602
Ministry of Education, Youth and Sports
18-19705S
Czech Science Foundation
CZ.1.05/2.1.00/19.0390
ERDF
86652036
CAS
CEP - Centrální evidence projektů
PubMed
34927839
DOI
10.1002/smtd.202000985
Knihovny.cz E-zdroje
- Klíčová slova
- dynamic instability, iSCAT, microtubules, scattering anisotropy, super-resolution microscopy,
- MeSH
- konformace proteinů MeSH
- mikroskopie metody MeSH
- mikrotubuly chemie MeSH
- polymery analýza MeSH
- tubulin MeSH
- Publikační typ
- časopisecké články MeSH
- práce podpořená grantem MeSH
- Názvy látek
- polymery MeSH
- tubulin MeSH
Microtubules are cytoskeletal polymers of tubulin dimers assembled into protofilaments that constitute nanotubes undergoing periods of assembly and disassembly. Static electron micrographs suggest a structural transition of straight protofilaments into curved ones occurring at the tips of disassembling microtubules. However, these structural transitions have never been observed and the process of microtubule disassembly thus remains unclear. Here, label-free optical microscopy capable of selective imaging of the transient structural changes of protofilaments at the tip of a disassembling microtubule is introduced. Upon induced disassembly, the transition of ordered protofilaments into a disordered conformation is resolved at the tip of the microtubule. Imaging the unbinding of individual tubulin oligomers from the microtubule tip reveals transient pauses and relapses in the disassembly, concurrent with increased organization of protofilament segments at the microtubule tip. These findings show that microtubule disassembly is a discrete process and suggest a stochastic mechanism of switching from the disassembly to the assembly phase.
Zobrazit více v PubMed
R. Fernandez-Leiro, S. H. W. Scheres, Nature 2016, 537, 339.
J. Ognjenović, R. Grisshammer, S. Subramaniam, Annu. Rev. Biomed. Eng. 2019, 21, 395.
R. W. Taylor, R. G. Mahmoodabadi, V. Rauschenberger, A. Giessl, A. Schambony, V. Sandoghdar, Nat. Photonics 2019, 13, 480.
S. Shashkova, M. C. Leake, Biosci. Rep. 2017, 37, BSR20170031.
L. G. Tilney, J. Bryan, D. J. Bush, K. Fujiwara, M. S. Mooseker, D. B. Murphy, D. H. Snyder, J. Cell Biol. 1973, 59, 267.
E. Nogales, Annu. Rev. Biochem. 2000, 69, 277.
T. Mitchison, M. Kirschner, Nature 1984, 312, 237.
R. A. Walker, E. T. O'Brien, N. K. Pryer, M. F. Soboeiro, W. A. Voter, H. P. Erickson, E. D. Salmon, J. Cell Biol. 1988, 107, 1437.
G. J. Brouhard, MBoC 2015, 26, 1207.
A. Muroyama, T. Lechler, Development 2017, 144, 3012.
B. van der Vaart, A. Akhmanova, A. Straube, Biochem. Soc. Trans. 2009, 37, 1007.
L. Eshun-Wilson, R. Zhang, D. Portran, M. V. Nachury, D. B. Toso, T. Löhr, M. Vendruscolo, M. Bonomi, J. S. Fraser, E. Nogales, Proc. Natl.Acad. Sci. U. S. A. 2019, 116, 10366.
M. Zanic, P. O. Widlund, A. A. Hyman, J. Howard, Nat. Cell Biol. 2013, 15, 688.
P. B. Schiff, S. B. Horwitz, Proc. Natl. Acad. Sci. USA 1980, 77, 1561.
R. B. G. Ravelli, B. Gigant, P. A. Curmi, I. Jourdain, S. Lachkar, A. Sobel, M. Knossow, Nature 2004, 428, 198.
L. M. Rice, E. A. Montabana, D. A. Agard, Proc. Natl. Acad. Sci. USA 2008, 105, 5378.
J. R. McIntosh, E. O'Toole, G. Morgan, J. Austin, E. Ulyanov, F. Ataullakhanov, N. Gudimchuk, J. Cell Biol. 2018, 217, 2691.
G. M. Alushin, G. C. Lander, E. H. Kellogg, R. Zhang, D. Baker, E. Nogales, Cell 2014, 157, 1117.
E. M. Mandelkow, J. Cell Biol. 1991, 114, 977.
J. W. Driver, E. A. Geyer, M. E. Bailey, L. M. Rice, C. L. Asbury, eLife 2017, 6, 28433.
P. Bieling, L. Laan, H. Schek, E. L. Munteanu, L. Sandblad, M. Dogterom, D. Brunner, T. Surrey, Nature 2007, 450, 1100.
G. J. Brouhard, L. M. Rice, Nat. Rev. Mol. Cell Biol. 2018, 19, 451.
S. Inoué, Chromosoma 1953, 5, 487.
Y. Hiramoto, Y. Hamaguchi, Y. Shóji, T. E. Schroeder, S. Shimoda, S. Nakamura, J. Cell Biol. 1981, 89, 121.
R. Oldenbourg, E. D. Salmon, P. T. Tran, Biophys. J. 1998, 74, 645.
M. Piliarik, V. Sandoghdar, Nat. Commun. 2014, 5, 4495.
R. W. Taylor, V. Sandoghdar, NanoLett 2019, 19, 4827.
K. Holanová, M. Vala, M. Piliarik, Opt. Laser Technol. 2019, 109, 323.
G. Young, N. Hundt, D. Cole, A. Fineberg, J. Andrecka, A. Tyler, A. Olerinyova, A. Ansari, E. G. Marklund, M. P. Collier, S. A. Chandler, O. Tkachenko, J. Allen, M. Crispin, N. Billington, Y. Takagi, J. R. Sellers, C. Eichmann, P. Selenko, L. Frey, R. Riek, M. R. Galpin, W. B. Struwe, J. L. P. Benesch, P. Kukura, Science 2018, 360, 423.
J. Andrecka, J. Ortega Arroyo, K. Lewis, R. A. Cross, P. Kukura, Biophys. J. 2016, 110, 214.
K. J. Mickolajczyk, E. A. Geyer, T. Kim, L. M. Rice, W. O. Hancock, Proc. Natl. Acad. Sci. USA 2019, 116, 7314.
I.-B. Lee, H.-M. Moon, J.-H. Joo, K.-H. Kim, S.-C. Hong, M. Cho, ACS Photonics 2018, 5, 797.
Z. Shen, S. Cui, A. Dogariu, Opt. Lett. 2019, 44, 3446.
M. Mazaheri, J. Ehrig, A. Shkarin, V. Zaburdaev, V. Sandoghdar, Nano Lett. 2020, 20, 7213.
G. Yun, K. Crabtree, R. A. Chipman, Appl. Opt. 2011, 50, 2855.
J. Howard, A. J. Hudspeth, R. D. Vale, Nature 1989, 342, 154.
J. Atherton, M. Stouffer, F. Francis, C. A. Moores, Acta Crystallogr., Sect. D: Struct. Biol. 2018, 74, 572.
R. E. Thompson, D. R. Larson, W. W. Webb, Biophys. J. 2002, 82, 2775.
I. Arnal, E. Karsenti, A. A. Hyman, J. Cell Biol. 2000, 149, 767.
M. Castoldi, A. V. Popov, Protein Expression Purif. 2003, 32, 83.
H. Isojima, R. Iino, Y. Niitani, H. Noji, M. Tomishige, Nat. Chem. Biol. 2016, 12, 290.
V. Verma, W. O. Hancock, J. M. Catchmark, J. Biol. Eng. 2008, 2, 14.
O. Krivosudský, P. Dráber, M. Cifra, EPL 2017, 117, 38003.
S. Baker, I. Matthews, Int. J. Comput. Vision 2004, 56, 221.
F. Gao, L. Han, Comput. Optim. Appl. 2012, 51, 259.
T. Krouglova, J. Vercammen, Y. Engelborghs, Biophys. J. 2004, 87, 2635.
Y. Li, W. B. Struwe, P. Kukura, Nucleic Acids Res. 2020, 48, 97.
U. Endesfelder, S. Malkusch, F. Fricke, M. Heilemann, Histochem. Cell Biol. 2014, 141, 629.
Surpassing the Diffraction Limit in Label-Free Optical Microscopy
Electro-detachment of kinesin motor domain from microtubule in silico