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Molecular Biology of the Cell|May 13, 2011
Vimentin intermediate filaments modulate the motility of mitochondriaOxana E Nekrasova, Melissa G Mendez, Ivan S Chernoivanenko, et al.
The Journal of Clinical Investigation|April 16, 2013
Giant axonal neuropathy-associated gigaxonin mutations impair intermediate filament protein degradationSaleemulla Mahammad, S N Prasanna Murthy, Alessandro Didonna, et al.
Cancer|December 6, 2002
Loss of adhesion-regulated proteinase production is correlated with invasive activity in oral squamous cell carcinomaSupurna Ghosh, Hidayatullah G Munshi, Ratna Sen, et al.
Methods in Enzymology|January 23, 2016
Methods for Determining the Cellular Functions of Vimentin Intermediate FilamentsKaren M Ridge, Dale Shumaker, Amélie Robert, et al.
Nature Structural & Molecular Biology|April 17, 2024
Vimentin filaments integrate low-complexity domains in a complex helical structureMatthias Eibauer, Miriam S Weber, Rafael Kronenberg-Tenga, et al.
Biophysical Journal|January 28, 2019
Probe Sensitivity to Cortical versus Intracellular Cytoskeletal Network StiffnessAmir Vahabikashi, Chan Young Park, Kristin Perkumas, et al.
Proceedings of the National Academy of Sciences of the United States of America|June 9, 2004
Accumulation of mutant lamin A causes progressive changes in nuclear architecture in Hutchinson-Gilford progeria syndromeRobert D Goldman, Dale K Shumaker, Michael R Erdos, et al.
Proceedings of the National Academy of Sciences of the United States of America|August 15, 2019
High stretchability, strength, and toughness of living cells enabled by hyperelastic vimentin intermediate filamentsJiliang Hu, Yiwei Li, Yukun Hao, et al.
Nature Communications|November 18, 2014
TRF2 and lamin A/C interact to facilitate the functional organization of chromosome endsAshley M Wood, Jannie M Rendtlew Danielsen, Catherine A Lucas, et al.
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