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Original Article

Actin in polygonal arrays of microfilaments and sequestered actin bundles (SABs) in lens epithelial cells of rabbits and mice

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Pages 713-718 | Received 22 Mar 1985, Accepted 22 Apr 1985, Published online: 02 Jul 2009

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MichaelT. Turvey & SérgioT. Fonseca. (2014) The Medium of Haptic Perception: A Tensegrity Hypothesis. Journal of Motor Behavior 46:3, pages 143-187.
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Nancy S. Rafferty, Keen A. Rafferty & Seymour Zigman. (1997) Comparative response to UV irradiation of cytoskeletal elements in rabbit and skate lens epithelial cells. Current Eye Research 16:4, pages 310-319.
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Nancy S. Rafferty & Diane L. Scholz. (1991) Development of actin polygonal arrays in rabbit lens epithelial cells. Current Eye Research 10:7, pages 637-643.
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Diane L. Scholz & Nancy S. Rafferty. (1988) Immunogold-EM localization of actin and vimentin filaments in relation to polygonal arrays in lens epithelium in situ. Current Eye Research 7:7, pages 705-719.
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Justin Parreno, Grace Emin, Michael P. Vu, Jackson T. Clark, Sandeep Aryal, Shaili D. Patel & Catherine Cheng. (2022) Methodologies to unlock the molecular expression and cellular structure of ocular lens epithelial cells. Frontiers in Cell and Developmental Biology 10.
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Justin Parreno, Michael B. Amadeo, Elizabeth H. Kwon & Velia M. Fowler. (2020) Tropomyosin 3.1 Association With Actin Stress Fibers is Required for Lens Epithelial to Mesenchymal Transition. Investigative Opthalmology & Visual Science 61:6, pages 2.
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Catherine Cheng, Justin Parreno, Roberta B. Nowak, Sondip K. Biswas, Kehao Wang, Masato Hoshino, Kentaro Uesugi, Naoto Yagi, Juliet A. Moncaster, Woo-Kuen Lo, Barbara Pierscionek & Velia M. Fowler. (2019) Age-related changes in eye lens biomechanics, morphology, refractive index and transparency. Aging 11:24, pages 12497-12531.
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Caitlin M Logan & A Sue Menko. (2019) Microtubules: Evolving roles and critical cellular interactions. Experimental Biology and Medicine 244:15, pages 1240-1254.
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Justin Parreno, Catherine Cheng, Roberta B. Nowak & Velia M. Fowler. (2018) The effects of mechanical strain on mouse eye lens capsule and cellular microstructure. Molecular Biology of the Cell 29:16, pages 1963-1974.
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Dylan S. Audette, David A. Scheiblin & Melinda K. Duncan. (2017) The molecular mechanisms underlying lens fiber elongation. Experimental Eye Research 156, pages 41-49.
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Catherine Cheng, Roberta B. Nowak & Velia M. Fowler. (2017) The lens actin filament cytoskeleton: Diverse structures for complex functions. Experimental Eye Research 156, pages 58-71.
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Donald E Ingber, Ning Wang & Dimitrije Stamenović. (2014) Tensegrity, cellular biophysics, and the mechanics of living systems. Reports on Progress in Physics 77:4, pages 046603.
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Donald E. Ingber. (2008) Tensegrity-based mechanosensing from macro to micro. Progress in Biophysics and Molecular Biology 97:2-3, pages 163-179.
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P. Vasantha Rao & Rupalatha Maddala. (2006) The role of the lens actin cytoskeleton in fiber cell elongation and differentiation. Seminars in Cell & Developmental Biology 17:6, pages 698-711.
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Thomas S. Vihtelic, Yoshiyuki Yamamoto, Sandra S. Springer, William R. Jeffery & David R. Hyde. (2005) Lens opacity and photoreceptor degeneration in the zebrafishlens opaque mutant. Developmental Dynamics 233:1, pages 52-65.
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. 2010. Development of the Ocular Lens. Development of the Ocular Lens.
Donald E. Ingber. (2003) Tensegrity I. Cell structure and hierarchical systems biology. Journal of Cell Science 116:7, pages 1157-1173.
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Donald E. Ingber, Laura Dike, Linda Hansen, Seth Karp, Helen Liley, Andrew Maniotis, Helen McNamee, David Mooney, George Plopper, John Sims & Ning Wang. 1994. Mechanical Engineering of the Cytoskeleton in Developmental Biology. Mechanical Engineering of the Cytoskeleton in Developmental Biology 173 224 .
Donald E. Ingber. (1993) Cellular tensegrity: defining new rules of biological design that govern the cytoskeleton. Journal of Cell Science 104:3, pages 613-627.
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Nancy S. Rafferty, Seymour Zigman, Thurma McDaniel & Diane L. Scholz. (2005) Near‐UV radiation disrupts filamentous actin in lens epithelial cells. Cell Motility 26:1, pages 40-48.
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N. S. Rafferty & K. A. Rafferty. (2009) Lens cytoskeleton and after‐cataract. Acta Ophthalmologica 70:S205, pages 34-45.
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Seymour Zigman, Nancy S. Rafferty, Diane L. Scholz & Kris Lowe. (1992) The effects of near-UV radiation on elasmobranch lens cytoskeletal actin. Experimental Eye Research 55:2, pages 193-201.
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A.R. Prescott, S.F. Webb, D. Rawlins, P.J. Shaw & R.M. Warn. (1991) Microtubules rich in post-translationally modified α-tubulin form distinct arrays in frog lens epithelial cells. Experimental Eye Research 52:6, pages 743-753.
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A.R. Prescott, S. Stewart, G. Duncan, R. Gowing & R.M. Warn. (1991) Diamide induces reversible changes in morphology, cytoskeleton and cell-cell coupling in lens epithelial cells. Experimental Eye Research 52:1, pages 83-92.
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Nancy S. Rafferty, Diane L. Scholz, Marlyn Goldberg & Myron Lewyckyj. (1990) Immunocytochemical evidence for an actin-myosin system in lens epithelial cells. Experimental Eye Research 51:5, pages 591-599.
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Michael Locke. (1990) Is there somatic inheritance of intracellular patterns?. Journal of Cell Science 96:4, pages 563-567.
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Patric Delhanty & Michael Locke. (1990) Transverse cuticular structures arise above actin filament bundles in the epidermis of Calpodes ethlius (Stöll) (Lepidoptera : Hesperiidae). International Journal of Insect Morphology and Embryology 19:3-4, pages 177-185.
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W. Liou. (1990) Whole-mount preparations of mouse lens epithelium for the fluorescent cytological study of actin. Journal of Microscopy 157:2, pages 239-245.
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Michael Locke. (1988) Insect cells for the study of general problems in biology—Somatic inheritance. International Journal of Insect Morphology and Embryology 17:6, pages 419-436.
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Willisa Liou & Nancy S. Rafferty. (2005) Actin filament patterns in mouse lens epithelium: A study of the effects of aging, injury, and genetics. Cell Motility 9:1, pages 17-29.
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Kathleen J. Green, John C. Talian & Robert D. Goldman. (2005) Relationship between intermediate filaments and microfilaments in cultured fibroblasts: Evidence for common foci during cell spreading. Cell Motility 6:4, pages 406-418.
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