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Original Article

Ultrastructural localization of aA-crystallin to the bovine lens fiber cell cytoskeleton

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Pages 417-436 | Received 17 Sep 1990, Accepted 02 Apr 1991, Published online: 02 Jul 2009

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Read on this site (9)

Richard John Cenedella & Gudiseva Chandrasekher. (1993) High capacity binding of alpha crystallins to various bovine lens membrane preparations. Current Eye Research 12:11, pages 1025-1038.
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S. Gopalakrishnan & L. Takemoto. (1992) Binding of actin to lens alpha crystallins. Current Eye Research 11:9, pages 929-933.
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Richard J. Cenedella & Charles R. Fleschner. (1992) Selective association of crystallins with lens 'native' membrane during dynamic cataractogenesis. Current Eye Research 11:8, pages 801-815.
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Charles R. Fleschner & Richard J. Cenedella. (1992) Examination of a lens 'native' plasma membrane fraction and its associated crystallins. Current Eye Research 11:8, pages 739-752.
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Norm Lieska, Hsi-Yuan Yang & Harry Maisel. (1991) Reconstitution of the filamentous backbone of lens beaded-chain filaments from a purified 49kD polypeptide. Current Eye Research 10:11, pages 1037-1048.
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Carrie E Barnum, Salma Al Saai, Shaili D Patel, Catherine Cheng, Deepti Anand, Xiaolu Xu, Soma Dash, Archana D Siddam, Lisa Glazewski, Emily Paglione, Shawn W Polson, Shinichiro Chuma, Robert W Mason, Shuo Wei, Mona Batish, Velia M Fowler & Salil A Lachke. (2020) The Tudor-domain protein TDRD7, mutated in congenital cataract, controls the heat shock protein HSPB1 (HSP27) and lens fiber cell morphology. Human Molecular Genetics 29:12, pages 2076-2097.
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Jose M. Chaves, Ratna Gupta, Kiran Srivastava & Om Srivastava. (2017) Human alpha A-crystallin missing N-terminal domain poorly complexes with filensin and phakinin. Biochemical and Biophysical Research Communications 494:1-2, pages 402-408.
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John I. Clark. (2016) Functional sequences in human alphaB crystallin. Biochimica et Biophysica Acta (BBA) - General Subjects 1860:1, pages 240-245.
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Ram Kannan, Parameswaran G. Sreekumar & David R. Hinton. (2012) Novel roles for α-crystallins in retinal function and disease. Progress in Retinal and Eye Research 31:6, pages 576-604.
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Roger J.W. Truscott & Xiangjia Zhu. (2010) Presbyopia and cataract: A question of heat and time. Progress in Retinal and Eye Research 29:6, pages 487-499.
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Kelly A. Barton, Cheng-Da Hsu & J. Mark Petrash. (2009) Interactions between Small Heat Shock Protein α-Crystallin and Galectin-Related Interfiber Protein (GRIFIN) in the Ocular Lens. Biochemistry 48:18, pages 3956-3966.
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C. Schietroma, N. Fain, L.M. Zampighi, S. Lanzavecchia & G.A. Zampighi. (2009) The structure of the cytoplasm of lens fibers as determined by conical tomography. Experimental Eye Research 88:3, pages 566-574.
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Paul G. FitzGerald. (2009) Lens intermediate filaments. Experimental Eye Research 88:2, pages 165-172.
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J. Fielding Hejtmancik & Joram Piatigorsky. 2008. Albert &amp Jakobiec's Principles &amp Practice of Ophthalmology. Albert &amp Jakobiec's Principles &amp Practice of Ophthalmology 1341 1364 .
Ming-Der Perng, Qingjiong Zhang & Roy A. Quinlan. (2007) Insights into the beaded filament of the eye lens. Experimental Cell Research 313:10, pages 2180-2188.
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Sandra Cottet, Lydia Michaut, Gaëlle Boisset, Ulrich Schlecht, Walter Gehring & Daniel F. Schorderet. (2006) Biological characterization of gene response in Rpe65‐/‐ mouse model of Leber's congenital amaurosis during progression of the disease. The FASEB Journal 20:12, pages 2036-2049.
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Florence Y. Lee, Heidi R. Kast-Woelbern, Jenny Chang, Guizhen Luo, Stacey A. Jones, Michael C. Fishbein & Peter A. Edwards. (2005) α-Crystallin Is a Target Gene of the Farnesoid X-activated Receptor in Human Livers. Journal of Biological Chemistry 280:36, pages 31792-31800.
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Ko Nakata, John W. Crabb & Joe G. Hollyfield. (2005) Crystallin distribution in Bruch's membrane–choroid complex from AMD and age-matched donor eyes. Experimental Eye Research 80:6, pages 821-826.
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Aileen Sandilands, Xin Wang, Aileen M Hutcheson, John James, Alan R Prescott, Alfred Wegener, Milos Pekny, Xiahou Gong & Roy A Quinlan. (2004) Bfsp2 mutation found in mouse 129 strains causes the loss of CP49’ and induces vimentin-dependent changes in the lens fibre cell cytoskeleton. Experimental Eye Research 78:4, pages 875-889.
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Aileen Sandilands, Xin Wang, Aileen M Hutcheson, John James, Alan R Prescott, Alfred Wegener, Milos Pekny, Xiahou Gong & Roy A Quinlan. (2004) Bfsp2 mutation found in mouse 129 strains causes the loss of CP49 and induces vimentin-dependent changes in the lens fibre cell cytoskeleton. Experimental Eye Research 78:1, pages 109-123.
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Jing Hua Xi, Fang Bai & Usha P. Andley. (2003) Reduced survival of lens epithelial cells in theαA-crystallin-knockout mouse. Journal of Cell Science 116:6, pages 1073-1085.
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Aileen Sandilands, Aileen M. Hutcheson, Heather A. Long, Alan R. Prescott, Gijs Vrensen, Jana Löster, Norman Klopp, Raimund B. Lutz, Jochen Graw, Shigeo Masaki, Christopher M. Dobson, Cait E. MacPhee & Roy A. Quinlan. (2002) Altered aggregation properties of mutant γ-crystallins cause inherited cataract. The EMBO Journal 21:22, pages 6005-6014.
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Usha P. Andley, Harendra C. Patel & Jing-Hua Xi. (2002) The R116C Mutation in αA-crystallin Diminishes Its Protective Ability against Stress-induced Lens Epithelial Cell Apoptosis. Journal of Biological Chemistry 277:12, pages 10178-10186.
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Julia K. Willsie & James S. Clegg. (2002) Small heat shock protein p26 associates with nuclear lamins and HSP70 in nuclei and nuclear matrix fractions from stressed cells. Journal of Cellular Biochemistry 84:3, pages 601-614.
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Midori Nakagawa, Naomi Tsujimoto, Hiroyuki Nakagawa, Toru Iwaki, Yasuyuki Fukumaki & Akiko Iwaki. (2001) Association of HSPB2, a Member of the Small Heat Shock Protein Family, with Mitochondria. Experimental Cell Research 271:1, pages 161-168.
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Brian A. Cobb & J.Mark Petrash. (2000) Characterization of α-Crystallin-Plasma Membrane Binding. Journal of Biological Chemistry 275:9, pages 6664-6672.
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Joseph Horwitz. (2000) The function of alpha-crystallin in vision. Seminars in Cell & Developmental Biology 11:1, pages 53-60.
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J I Clark, J M Clark, L L David & H Matsushima. (1999) Lens cytoskeleton and transparency: A model. Eye 13:3, pages 417-424.
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R A Quinlan, A Sandilands, J E Procter, A R Prescott, A M Hutcheson, R Dahm, C Gribbon, P Wallace & J M Carter. (1999) The eye lens cytoskeleton. Eye 13:3, pages 409-416.
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JOHN F. HESS, JODI T. CASSELMAN, ALLEN P. KONG & PAUL G. FITZGERALD. (1998) Primary Sequence, Secondary Structure, Gene Structure, and Assembly Properties Suggests that the Lens-specific Cytoskeletal Protein Filensin Represents a Novel Class of Intermediate Filament Protein. Experimental Eye Research 66:5, pages 625-644.
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Mitsushi Inomata, Kohji Nomura, Makoto Takehana, Takaomi C Saido, Seiichi Kawashima & Seigo Shumiya. (1997) Evidence for the involvement of calpain in cataractogenesis in Shumiya cataract rat (SCR). Biochimica et Biophysica Acta (BBA) - Molecular Basis of Disease 1362:1, pages 11-23.
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K.P. Mitton, S.J. Tumminia, J. Arora, P. Zelenka, D.L. Epstein & P. Russell. (1997) Transient Loss of αB-Crystallin: An Early Cellular Response to Mechanical Stretch. Biochemical and Biophysical Research Communications 235:1, pages 69-73.
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Hari S. Sharma & Joachim Stahl. 1997. Heat Shock Proteins and the Cardiovascular System. Heat Shock Proteins and the Cardiovascular System 127 158 .
Keyang Wang & Abraham Spector. (2004) α‐Crystallin Stabilizes Actin Filaments and Prevents Cytochalasin‐Induced Depolymerization in a Phosphorylation‐Dependent Manner. European Journal of Biochemistry 242:1, pages 56-66.
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John F. Hess, Jodi T. Casselman & Paul G. FitzGerald. (1996) Gene Structure and cDNA Sequence Identify the Beaded Filament Protein CP49 as a Highly Divergent Type I Intermediate Filament Protein. Journal of Biological Chemistry 271:12, pages 6729-6735.
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E.L. Benedetti, I. Dunia, J.L. Dufier, Yit Kim Seng & H. Bloemendal. 1996. Cytoskeleton in Specialized Tissues and in Pathological States. Cytoskeleton in Specialized Tissues and in Pathological States 451 517 .
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B. Raman, T. Ramakrishna & Ch. Mohan Rao. (1995) Temperature dependent chaperone-like activity of alpha-crystallin. FEBS Letters 365:2-3, pages 133-136.
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J.M. Carter, A.M. Hutcheson & R.A. Quinlan. (1995) In vitro studies on the assembly properties of the lens proteins CP49, CP115: Coassembly with α-crystallin but not with vimentin. Experimental Eye Research 60:2, pages 181-192.
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Patricia J. T. A. Groenen, Karin B. Merck, Wilfried W. De Jong & Hans Bloemendal. (2005) Structure and Modifications of the Junior Chaperone α‐Crystallin. European Journal of Biochemistry 225:1, pages 1-19.
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Spyros D. Georgatos, Fotini Gounari & Susann Remington. (2005) The beaded intermediate filaments and their potential functions in eye lens. BioEssays 16:6, pages 413-418.
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Wilfried W. de Jong, Nicolette H. Lubsen & Harry J. Kraft. (1994) Molecular evolution of the eye lens. Progress in Retinal and Eye Research 13:2, pages 391-442.
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P. Christen & E. HofmannPatricia J. T. A. Groenen, Karin B. Merck, Wilfried W. De Jong & Hans Bloemendal. 1995. EJB Reviews 1994. EJB Reviews 1994 165 183 .
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Christina E.M. Voorter, Liesbeth Wintjes, Hans Bloemendal & Wilfried W. de Jong. (1992) Relocalization of αB-crystallin by heat shock in ovarian carcinoma cells. FEBS Letters 309:2, pages 111-114.
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