Probing cytoskeletal modulation of passive and active intracellular dynamics using nanobody-functionalized quantum dots

Publication date

2017-03-21

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Katrukha, Eugene AISNI 0000000492896501
Mikhaylova, MarinaISNI 0000000077177518
van Brakel, Hugo X
van Bergen en Henegouwen, PORCID 0000-0001-6050-9042ISNI 0000000387765753
Akhmanova, AnnaISNI 0000000390996464
Hoogenraad, Casper CISNI 0000000396512854
Kapitein, Lukas C.ISNI 0000000389218112

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Abstract

The cytoplasm is a highly complex and heterogeneous medium that is structured by the cytoskeleton. How local transport depends on the heterogeneous organization and dynamics of F-actin and microtubules is poorly understood. Here we use a novel delivery and functionalization strategy to utilize quantum dots (QDs) as probes for active and passive intracellular transport. Rapid imaging of non-functionalized QDs reveals two populations with a 100-fold difference in diffusion constant, with the faster fraction increasing upon actin depolymerization. When nanobody-functionalized QDs are targeted to different kinesin motor proteins, their trajectories do not display strong actin-induced transverse displacements, as suggested previously. Only kinesin-1 displays subtle directional fluctuations, because the subset of microtubules used by this motor undergoes prominent undulations. Using actin-targeting agents reveals that F-actin suppresses most microtubule shape remodelling, rather than promoting it. These results demonstrate how the spatial heterogeneity of the cytoskeleton imposes large variations in non-equilibrium intracellular dynamics.

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Katrukha, E A, Mikhaylova, M, van Brakel, H X, van Bergen En Henegouwen, P M, Akhmanova, A, Hoogenraad, C C & Kapitein, L C 2017, 'Probing cytoskeletal modulation of passive and active intracellular dynamics using nanobody-functionalized quantum dots', Nature Communications, vol. 8, 14772. https://doi.org/10.1038/ncomms14772