Mechanical Properties of Xenopus Egg Cytoplasmic Extracts
Overview
Affiliations
Cytoplasmic extracts prepared from Xenopus laevis eggs are used for the reconstitution of a wide range of processes in cell biology, and offer a unique environment in which to investigate the role of cytoplasmic mechanics without the complication of preorganized cellular structures. As a step toward understanding the mechanical properties of this system, we have characterized the rheology of crude interphase extracts. At macroscopic length scales, the extract forms a soft viscoelastic solid. Using a conventional mechanical rheometer, we measure the elastic modulus to be in the range of 2-10 Pa, and loss modulus in the range of 0.5-5 Pa. Using pharmacological and immunological disruption methods, we establish that actin filaments and microtubules cooperate to give mechanical strength, whereas the intermediate filament cytokeratin does not contribute to viscoelasticity. At microscopic length scales smaller than the average network mesh size, the response is predominantly viscous. We use multiple particle tracking methods to measure the thermal fluctuations of 1 microm embedded tracer particles, and measure the viscosity to be approximately 20 mPa-s. We explore the impact of rheology on actin-dependent cytoplasmic contraction, and find that although microtubules modulate contractile forces in vitro, their interactions are not purely mechanical.
Sakamoto R, Maeda Y Biophys Physicobiol. 2023; 20(3):e200032.
PMID: 38124798 PMC: 10728624. DOI: 10.2142/biophysico.bppb-v20.0032.
YAP Inactivation by Soft Mechanotransduction Relieves MAFG for Tumor Cell Dedifferentiation.
Lv J, Liu X, Zhou Y, Cheng F, Chen H, Li S Research (Wash D C). 2023; 6:0215.
PMID: 37614365 PMC: 10443527. DOI: 10.34133/research.0215.
Najafi J, Dmitrieff S, Minc N Proc Natl Acad Sci U S A. 2023; 120(9):e2216839120.
PMID: 36802422 PMC: 9992773. DOI: 10.1073/pnas.2216839120.
Cytoplasmic organization promotes protein diffusion in Xenopus extracts.
Huang W, Cheng X, Ferrell Jr J Nat Commun. 2022; 13(1):5599.
PMID: 36151204 PMC: 9508076. DOI: 10.1038/s41467-022-33339-0.
Contribution of cytoplasm viscoelastic properties to mitotic spindle positioning.
Xie J, Najafi J, Le Borgne R, Verbavatz J, Durieu C, Salle J Proc Natl Acad Sci U S A. 2022; 119(8).
PMID: 35169074 PMC: 8872784. DOI: 10.1073/pnas.2115593119.