Cysteine shotgun–mass spectrometry (CS-MS) reveals dynamic sequence of protein structure changes within mutant and stressed cells
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D. Speicher | D. Discher | N. Mohandas | X. An | Hsin-Yao Tang | C. Krieger
[1] David W Speicher,et al. A Comprehensive Model of the Spectrin Divalent Tetramer Binding Region Deduced Using Homology Modeling and Chemical Cross-linking of a Mini-spectrin* , 2010, Journal of Biological Chemistry.
[2] A. Mondragón,et al. Structural basis for spectrin recognition by ankyrin. , 2010, Blood.
[3] Vann Bennett,et al. Membrane domains based on ankyrin and spectrin associated with cell-cell interactions. , 2009, Cold Spring Harbor perspectives in biology.
[4] T. Steitz,et al. The structure of the ankyrin-binding site of beta-spectrin reveals how tandem spectrin-repeats generate unique ligand-binding properties. , 2009, Blood.
[5] N. Mohandas,et al. Red cell membrane: past, present, and future. , 2008, Blood.
[6] Yang Yang,et al. Protein 4.1R-dependent multiprotein complex: New insights into the structural organization of the red blood cell membrane , 2008, Proceedings of the National Academy of Sciences.
[7] D. Speicher,et al. Pathogenic proline mutation in the linker between spectrin repeats: disease caused by spectrin unfolding. , 2007, Blood.
[8] G. Debnath,et al. Conformational Stabilities of the Structural Repeats of Erythroid Spectrin and Their Functional Implications* , 2006, Journal of Biological Chemistry.
[9] Peter Michaely,et al. Nanospring behaviour of ankyrin repeats , 2006, Nature.
[10] Michael L Klein,et al. Unfolding a linker between helical repeats. , 2005, Journal of molecular biology.
[11] A. Mondragón,et al. Structural insights into the stability and flexibility of unusual erythroid spectrin repeats. , 2004, Structure.
[12] P. Gallagher,et al. Hereditary elliptocytosis: spectrin and protein 4.1R. , 2004, Seminars in hematology.
[13] Peter Michaely,et al. Crystal structure of a 12 ANK repeat stack from human ankyrinR , 2002, The EMBO journal.
[14] N. Mohandas,et al. Shear-Response of the Spectrin Dimer-Tetramer Equilibrium in the Red Blood Cell Membrane* , 2002, The Journal of Biological Chemistry.
[15] M. Giorgi,et al. Spectrin oligomerization is cooperatively coupled to membrane assembly: a linkage targeted by many hereditary hemolytic anemias? , 2001, Experimental and molecular pathology.
[16] P. Low,et al. Crystallographic structure and functional interpretation of the cytoplasmic domain of erythrocyte membrane band 3. , 2000, Blood.
[17] M. Rief,et al. Single molecule force spectroscopy of spectrin repeats: low unfolding forces in helix bundles. , 1999, Journal of molecular biology.
[18] D. Boal,et al. Simulations of the erythrocyte cytoskeleton at large deformation. II. Micropipette aspiration. , 1998, Biophysical journal.
[19] J. Conboy,et al. Mechanochemistry of protein 4.1's spectrin-actin-binding domain: ternary complex interactions, membrane binding, network integration, structural strengthening , 1995, The Journal of cell biology.
[20] J. Thompson,et al. CLUSTAL W: improving the sensitivity of progressive multiple sequence alignment through sequence weighting, position-specific gap penalties and weight matrix choice. , 1994, Nucleic acids research.
[21] E. Kahana,et al. conformation and phasing of dystrophin structural repeats. , 1994, Journal of molecular biology.
[22] T. Blundell,et al. Comparative protein modelling by satisfaction of spatial restraints. , 1993, Journal of molecular biology.
[23] D A Parry,et al. Analysis of the three-alpha-helix motif in the spectrin superfamily of proteins. , 1992, Biophysical journal.
[24] D. Elbaum,et al. Interactions among red cell membrane proteins. , 1988, Biochemistry.
[25] N. Mohandas,et al. Restoration of normal membrane stability to unstable protein 4.1-deficient erythrocyte membranes by incorporation of purified protein 4.1. , 1986, The Journal of clinical investigation.
[26] V. Ohanian,et al. Analysis of the ternary interaction of the red cell membrane skeletal proteins spectrin, actin, and 4.1. , 1984, Biochemistry.
[27] S B Shohet,et al. Deficiency of skeletal membrane protein band 4.1 in homozygous hereditary elliptocytosis. Implications for erythrocyte membrane stability. , 1981, The Journal of clinical investigation.
[28] L. Erickson,et al. Calorimetric studies of the structural transitions of the human erythrocyte membrane. The involvement of spectrin in the A transition. , 1977, Biochemistry.
[29] J. Wyman,et al. Kinetics of the reaction of the "masked" and "free" sulfhydryl groups of human hemoglobin with p-mercuribenzoate. , 1970, The Journal of biological chemistry.
[30] A. Cumano,et al. Forced Unfolding of Proteins Within Cells , 2007 .
[31] Dennis E Discher,et al. Cooperativity in forced unfolding of tandem spectrin repeats. , 2003, Biophysical journal.
[32] J. Jeffries,et al. Kinetics of the reaction hydroxyl + ammonia , 1986 .