Mechanics of membrane–cytoskeleton attachment in Paramecium
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[1] V. Subramaniam,et al. Nanomechanical properties of single amyloid fibrils , 2012, Journal of physics. Condensed matter : an Institute of Physics journal.
[2] Carsten Bergmann,et al. Disruption of a ciliary B9 protein complex causes Meckel syndrome. , 2011, American journal of human genetics.
[3] Charles N. Baroud,et al. Transitions between three swimming gaits in Paramecium escape , 2011, Proceedings of the National Academy of Sciences.
[4] P. Sens,et al. Dynamical organization of the cytoskeletal cortex probed by micropipette aspiration , 2010, Proceedings of the National Academy of Sciences.
[5] K. Anderson,et al. A mouse model for Meckel syndrome reveals Mks1 is required for ciliogenesis and Hedgehog signaling. , 2009, Human molecular genetics.
[6] V. Torres,et al. Ciliary and centrosomal defects associated with mutation and depletion of the Meckel syndrome genes MKS1 and MKS3. , 2009, Human molecular genetics.
[7] M. P. Healey,et al. Functional interactions between the ciliopathy-associated Meckel syndrome 1 (MKS1) protein and two novel MKS1-related (MKSR) proteins , 2009, Journal of Cell Science.
[8] J. Arellano,et al. Primary cilia regulate hippocampal neurogenesis by mediating sonic hedgehog signaling , 2008, Proceedings of the National Academy of Sciences.
[9] B. Yoder,et al. Functional redundancy of the B9 proteins and nephrocystins in Caenorhabditis elegans ciliogenesis. , 2008, Molecular biology of the cell.
[10] P. Rakic,et al. The stumpy gene is required for mammalian ciliogenesis , 2008, Proceedings of the National Academy of Sciences.
[11] Colin A. Johnson,et al. The Meckel-Gruber Syndrome proteins MKS1 and meckelin interact and are required for primary cilium formation. , 2007, Human molecular genetics.
[12] J. Mansfeld,et al. A broad spectrum of actin paralogs in Paramecium tetraurelia cells display differential localization and function , 2006, Journal of Cell Science.
[13] K. Guevorkian,et al. Swimming Paramecium in magnetically simulated enhanced, reduced, and inverted gravity environments , 2006, Proceedings of the National Academy of Sciences.
[14] Reinhard Lipowsky,et al. A practical guide to giant vesicles. Probing the membrane nanoregime via optical microscopy , 2006, Journal of physics. Condensed matter : an Institute of Physics journal.
[15] G. Coffe,et al. The membrane skeleton in Paramecium: Molecular characterization of a novel epiplasmin family and preliminary GFP expression results. , 2006, Protist.
[16] R. Kissmehl,et al. Immunolocalization of Actin in Paramecium Cells , 2004, The journal of histochemistry and cytochemistry : official journal of the Histochemistry Society.
[17] Michael P. Sheetz,et al. Cell control by membrane–cytoskeleton adhesion , 2001, Nature Reviews Molecular Cell Biology.
[18] E. Sackmann,et al. A micromechanic study of cell polarity and plasma membrane cell body coupling in Dictyostelium. , 2000, Biophysical journal.
[19] W. Brownell,et al. Fluorescence-Imaged Microdeformation of the Outer Hair Cell Lateral Wall , 1998, The Journal of Neuroscience.
[20] W. Brownell,et al. Micropipette aspiration on the outer hair cell lateral wall. , 1997, Biophysical journal.
[21] Evan Evans,et al. Physical properties of surfactant bilayer membranes: thermal transitions, elasticity, rigidity, cohesion and colloidal interactions , 1987 .
[22] R. Allen. FINE STRUCTURE OF MEMBRANOUS AND MICROFIBRILLAR SYSTEMS IN THE CORTEX OF PARAMECIUM CAUDATUM , 1971, The Journal of cell biology.