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Stimulation of microtubule-based transport by nucleation of microtubules on pigment granules.Semenova, Irina; Gupta, Dipika; Usui, Takeo; Hayakawa, Ichiro; Cowan, Ann; Rodionov, Vladimir Molecular biology of the cell 2017 Apr;
A minimal actomyosin-based model predicts the dynamics of filopodia on neuronal dendrites.Marchenko, Olena O; Das, Sulagna; Yu, Ji; Novak, Igor L; Rodionov, Vladimir I; Efimova, Nadia; Svitkina, Tatyana; Wolgemuth, Charles W; Loew, Leslie M Molecular biology of the cell 2017 Feb;
Engineered tug-of-war between kinesin and dynein controls direction of microtubule transport in vivo.Rezaul, Karim; Gupta, Dipika; Semenova, Irina; Ikeda, Kazuho; Kraikivski, Pavel; Yu, Ji; Cowan, Ann; Zaliapin, Ilya; Rodionov, Vladimir Traffic (Copenhagen, Denmark) 2016 Feb;
Cargo transport at microtubule crossings: evidence for prolonged tug-of-war between kinesin motors.Osunbayo, Olaolu; Butterfield, Jacqualine; Bergman, Jared; Mershon, Leslie; Rodionov, Vladimir; Vershinin, Michael Biophysical journal 2015 Mar;108(6):1480-3
Regulation of microtubule-based transport by MAP4.Semenova, Irina; Ikeda, Kazuho; Resaul, Karim; Kraikivski, Pavel; Aguiar, Mike; Gygi, Steven; Zaliapin, Ilya; Cowan, Ann; Rodionov, Vladimir Molecular biology of the cell 2014 Aug;25(20):3119-32
Loss of spastin function results in disease-specific axonal defects in human pluripotent stem cell-based models of hereditary spastic paraplegia.Denton, Kyle R; Lei, Ling; Grenier, Jeremy; Rodionov, Vladimir; Blackstone, Craig; Li, Xue-Jun Stem cells (Dayton, Ohio) 2013 Oct;32(2):414-23
Force-dependent detachment of kinesin-2 biases track switching at cytoskeletal filament intersections.Schroeder, Harry W; Hendricks, Adam G; Ikeda, Kazuho; Shuman, Henry; Rodionov, Vladimir; Ikebe, Mitsuo; Goldman, Yale E; Holzbaur, Erika L F Biophysical journal 2012 Jul;103(1):48-58
CK1 activates minus-end-directed transport of membrane organelles along microtubules.Ikeda, Kazuho; Zhapparova, Olga; Brodsky, Ilya; Semenova, Irina; Tirnauer, Jennifer S; Zaliapin, Ilya; Rodionov, Vladimir Molecular biology of the cell 2011 Apr;22(8):1321-9
Finding the cell center by a balance of dynein and myosin pulling and microtubule pushing: a computational study.Zhu, Jie; Burakov, Anton; Rodionov, Vladimir; Mogilner, Alex Molecular biology of the cell 2010 Dec;21(24):4418-27
Novel isoform of the Xenopus tropicalis PKA catalytic alpha subunit: An example of alternative splicing.Tabish, Mohammad; Rodionov, Vladimir I Comparative biochemistry and physiology. Part D, Genomics & proteomics 2010 Jun;5(2):151-6
Melanophores for microtubule dynamics and motility assays.Ikeda, Kazuho; Semenova, Irina; Zhapparova, Olga; Rodionov, Vladimir Methods in cell biology 2010 Jan;97401-14
CLIP-170-dependent capture of membrane organelles by microtubules initiates minus-end directed transport.Lomakin, Alexis J; Semenova, Irina; Zaliapin, Ilya; Kraikivski, Pavel; Nadezhdina, Elena; Slepchenko, Boris M; Akhmanova, Anna; Rodionov, Vladimir Developmental cell 2009 Sep;17(3):323-33
The protein kinase A-anchoring protein moesin is bound to pigment granules in melanophores.Semenova, Irina; Ikeda, Kazuho; Ivanov, Pavel; Rodionov, Vladimir Traffic (Copenhagen, Denmark) 2009 Feb;10(2):153-60
Actin in dendritic spines: measurements of kinematic heterogeneity and net retrograde flow with super-resolution optical imagingTatavarty, V., E.J.Kim, V.Rodionov and J.Yu PLOS One 2009 Jan;4e7724
Large-scale quantitative phosphoproteomic analysis of T Cell Receptor Signaling: System-wide modulation of protein-protein interaction mediated by site-specific phosphorylation.Mayya V, Lundgren DH, Hwang S-I, Rezaul K, Eng JK, Rodionov V, Han DK. Science Signaling 2009 Jan;18(2(84)):ra46
Quantitative phosphoproteomic analysis of T cell receptor signaling reveals system-wide modulation of protein-protein interactions.Mayya, Viveka; Lundgren, Deborah H; Hwang, Sun-Il; Rezaul, Karim; Wu, Linfeng; Eng, Jimmy K; Rodionov, Vladimir; Han, David K Science signaling 2009 Jan;2(84):ra46
Actin dynamics is essential for myosin-based transport of membrane organelles.Semenova, Irina; Burakov, Anton; Berardone, Neda; Zaliapin, Ilya; Slepchenko, Boris; Svitkina, Tatyana; Kashina, Anna; Rodionov, Vladimir Current biology : CB 2008 Oct;18(20):1581-6
Cytoplasmic dynein is involved in the retention of microtubules at the centrosome in interphase cells.Burakov, Anton; Kovalenko, Olga; Semenova, Irina; Zhapparova, Olga; Nadezhdina, Elena; Rodionov, Vladimir Traffic (Copenhagen, Denmark) 2008 Apr;9(4):472-80
Switching of membrane organelles between cytoskeletal transport systems is determined by regulation of the microtubule-based transport.Slepchenko, Boris M; Semenova, Irina; Zaliapin, Ilya; Rodionov, Vladimir The Journal of cell biology 2007 Nov;179(4):635-41
Microtubule motor Ncd induces sliding of microtubules in vivo.Oladipo, Abiola; Cowan, Ann; Rodionov, Vladimir Molecular biology of the cell 2007 Sep;18(9):3601-6
Fluorescence microscopy of microtubules in cultured cells.Semenova, Irina; Rodionov, Vladimir Methods in molecular medicine 2007 Jan;13793-102
Nonlocal mechanism of self-organization and centering of microtubule asters.Cytrynbaum, E N; Rodionov, V; Mogilner, A Bulletin of mathematical biology 2006 Jul;68(5):1053-72
Centering of a radial microtubule array by translocation along microtubules spontaneously nucleated in the cytoplasm.Malikov, Viacheslav; Cytrynbaum, Eric N; Kashina, Anna; Mogilner, Alexander; Rodionov, Vladimir Nature cell biology 2005 Dec;7(12):1213-8
Multiscale trend analysis of microtubule transport in melanophores.Zaliapin, Ilya; Semenova, Irina; Kashina, Anna; Rodionov, Vladimir Biophysical journal 2005 Jun;88(6):4008-16
Multiphoton-excited microfabrication in live cells via Rose Bengal cross-linking of cytoplasmic proteins.Basu, Swarna; Rodionov, Vladimir; Terasaki, Mark; Campagnola, Paul J Optics letters 2005 Jan;30(2):159-61