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  1. 1.   IFN-gamma and androgens disrupt mitochondrial function in murine myocytes
  2. Fenimore, John M; Springer, Danielle A; Romero, Maria E; Edmondson,Elijah; McVicar,Daniel; Yanpallewar, Sudhirkumar; Sanford,Michael; Spindel, Thea; Engle, Elizabeth; Meyer, Thomas J; Valencia,Julio; Young,Howard
  3. The Journal of Pathology. 2023, Apr 27;
  1. 2.   Dystrophin Is Required for the Normal Function of the Cardio-Protective K(ATP) Channel in Cardiomyocytes
  2. Graciotti, L.; Becker, J.; Granata, A. L.; Procopio, A. D.; Tessarollo, L.; Fulgenzi, G.
  3. Plos One. 2011, Oct; 6(10): 10.
  1. 3.   Developmental Cardiac Hypertrophy in a Mouse Model of Prolidase Deficiency
  2. Jung, S.; Silvius, D.; Nolan, K. A.; Borchert, G. L.; Millet, Y. H.; Phang, J. M.; Gunn, T. M.
  3. Birth Defects Research Part a-Clinical and Molecular Teratology. 2011, Apr; 91(4): 204-217.
  1. 4.   Carnivore-Specific SINEs (Can-SINEs): Distribution, Evolution, and Genomic Impact
  2. Walters-Conte, K. B.; Johnson, D. L. E.; Allard, M. W.; Pecon-Slattery, J.
  3. Journal of Heredity. 2011, Sep-Oct; 102: S2-S10.
  1. 5.   A novel ATP-dependent conformation in p97 N-D1 fragment revealed by crystal structures of disease-related mutants
  2. Tang, W. K.; Li, D. Y.; Li, C. C.; Esser, L.; Dai, R. M.; Guo, L. A.; Xia, D.
  3. Embo Journal. 2010, Jul; 29(13): 2217-2229.
  1. 6.   Nuclear lamin A/C deficiency induces defects in cell mechanics, polarization, and migration
  2. Lee, J. S. H.; Hale, C. M.; Panorchan, P.; Khatau, S. B.; George, J. P.; Tseng, Y.; Stewart, C. L.; Hodzic, D.; Wirtz, D.
  3. Biophysical Journal. 2007, Oct; 93(7): 2542-2552.
  1. 7.   Mouse models of the laminopathies
  2. Stewart, C. L.; Kozlov, S.; Fong, L. G.; Young, S. G.
  3. Experimental Cell Research. 2007, Jun; 313(10): 2144-2156.
  1. 8.   A complex rearrangement in GBE1 causes both perinatal hypoglycemic collapse and late-juvenile-onset neuromuscular degeneration in glycogen storage disease type IV of Norwegian forest cats
  2. Fyfe, J. C.; Kurzhals, R. L.; Hawkins, M. G.; Wang, P.; Yuhki, N.; Giger, U.; Van Winkle, T. J.; Haskins, M. E.; Patterson, D. F.; Henthorn, P. S.
  3. Molecular Genetics and Metabolism. 2007, Apr; 90(4): 383-392.
  1. 9.   Lamins A and C but not lamin B1 regulate nuclear mechanics
  2. Lammerding, J.; Fong, L. G.; Ji, J. Y.; Reue, K.; Stewart, C. L.; Young, S. G.; Lee, R. T.
  3. Journal of Biological Chemistry. 2006, Sep; 281(35): 25768-25780.
  1. 10.   Prelamin A and lamin A appear to be dispensable in the nuclear lamina
  2. Fong, L. G.; Ng, J. K.; Lammerding, J.; Vickers, T. A.; Meta, M.; Cote, N.; Gavino, B.; Qiao, X.; Chang, S. Y.; Young, S. R.; Yang, S. H.; Stewart, C. L.; Lee, R. T.; Bennett, C. F.; Bergo, M. O.; Young, S. G.
  3. Journal of Clinical Investigation. 2006, MAR; 116(3): 743-752.
  1. 11.   Loss of emerin at the nuclear envelope disrupts the Rb1/E2F and MyoD pathways during muscle regeneration
  2. Melcon, G.; Kozlov, S.; Cutler, D. A.; Sullivan, T.; Hernandez, L.; Zhao, P.; Mitchell, S.; Nader, G.; Bakay, M.; Rottman, J. N.; Hoffman, E. P.; Stewart, C. L.
  3. Human Molecular Genetics. 2006, FEB 15; 15(4): 637-651.
  1. 12.   Dependence of diffusional mobility of integral inner nuclear membrane proteins on A-type lamins
  2. Ostlund, C.; Sullivan, T.; Stewart, C. L.; Worman, H. J.
  3. Biochemistry. 2006, FEB 7; 45(5): 1374-1382.
  1. 13.   The laminopathies: The functional architecture of the nucleus and its contribution to disease
  2. Burke, B.; Stewart, C. L.
  3. Annual review of genomics and human genetics. 2006 7: 369-405.
  1. 14.   Immunogenetic risk and protective factors for the idiopathic inflammatory myopathies - Distinct HLA-A, -B, -Cw,-DRB1 and -DQA1 allelic profiles and motifs define clinicopothologic groups in Caucasians
  2. O'Hanlon, T. P.; Carrick, D. M.; Arnett, F. C.; Reveille, J. D.; Carrington, M.; Gao, X. J.; Oddis, C. V.; Morel, P. A.; Malley, J. D.; Malley, K.; Dreyfuss, J.; Shamim, E. A.; Rider, L. G.; Chanock, S. J.; Foster, C. B.; Bunch, T.; Plotz, P. H.; Love, L. A.; Miller, F. W.
  3. Medicine. 2005, NOV; 84(6): 338-349.
  1. 15.   Replacing acid alpha-glucosidase in Pompe disease: Recombinant and transgenic enzymes are equipotent, but neither completely clears glycogen from type II muscle fibers
  2. Raben, N.; Fukuda, T.; Gilbert, A. L.; de Jong, D.; Thurberg, B. L.; Mattaliano, R. J.; Meikle, P.; Hopwood, J. J.; Nagashima, K.; Nagaraju, K.; Plotz, P. H.
  3. Molecular Therapy. 2005, JAN; 11(1): 48-56.
  1. 16.   Structural organization and functions of the nucleus in development, aging, and disease
  2. Mounkes, L.; Stewart, C. L.; Schatten, G. P.
  3. Current Topics in Developmental Biology. 2004; 61 : 191-228.
  1. 17.   Disruption of spermatogenesis in mice lacking A-type lamins
  2. Alsheimer, M.; Liebe, B.; Sewell, L.; Stewart, C. L.; Scherthan, H.; Benavente, R.
  3. Journal of Cell Science. 2004 117(7): 1173-1178.
  1. 18.   Lamin A/C deficiency causes defective nuclear mechanics and mechanotransduction
  2. Lammerding, J.; Schulze, P. C.; Takahashi, T.; Kozlov, S.; Sullivan, T.; Kamm, R. D.; Stewart, C. L.; Lee, R. T.
  3. Journal of Clinical Investigation. 2004 113(3): 370-378.
  1. 19.   Defects in nuclear structure and function promote dilated cardiomyopathy in lamin A/C-deficient mice
  2. Nikolova, V.; Leimena, C.; McMahon, A. C.; Tan, J. C.; Chandar, S.; Jogia, D.; Kesteven, S. H.; Michalicek, J.; Otway, R.; Verheyen, F.; Rainer, S.; Stewart, C. L.; Martin, D.; Feneley, M. P.; Fatkin, D.
  3. Journal of Clinical Investigation. 2004 113(3): 357-369.
  1. 20.   Proteomics in the postgenomic age
  2. Morrison, R. S.; Kinoshita, Y.; Johnson, M. D.; Conrads, T. P.
  3. Proteome Characterization and Proteomics. 2003; 65 : 1-23.
  1. 21.   The laminopathies: nuclear structure meets disease
  2. Mounkes, L.; Kozlov, S.; Burke, B.; Stewart, C. L.
  3. Current Opinion in Genetics & Development. 2003 13(3): 223-230.
  1. 22.   Effect of pathogenic mis-sense mutations in lamin A on its interaction with emerin in vivo
  2. Holt, I.; Ostlund, C.; Stewart, C. L.; Man, N. T.; Worman, H. J.; Morris, G. E.
  3. Journal of Cell Science. 2003 116(14): 3027-3035.
  1. 23.   Nuclear structure and function defects promote dilated cardiomyopathy in lamin A/C-deficient mice
  2. Fatkin, D.; Nikolova, V.; Leimena, C.; McMahon, A.; Tan, J. C.; Chandar, S.; Jogia, D.; Kesteven, S.; Michalicek, J.; Otway, R.; Martin, D.; Stewart, C. L.; Rainer, S.; Feneley, M. P.
  3. Circulation. 2003 108(17): 449.
  1. 24.   Histidyl-tRNA synthetase and asparaginyl-tRNA synthetase, autoantigens in myositis, activate chemokine receptors on T lymphocytes and immature dendritic cells
  2. Howard, O. M. Z.; Dong, H. J. F.; Yang, D.; Raben, N.; Nagaraju, K.; Rosen, A.; Casciola-Rosen, L.; Hartlein, M.; Kron, M.; Yiadom, K.; Dwivedi, S.; Plotz, P. H.; Oppenheim, J. J.
  3. Journal of Experimental Medicine. 2002 196(6): 781-791.
  1. 25.   Characterization of adiposity and metabolism in Lmna-deficient mice
  2. Cutler, D. A.; Sullivan, T.; Marcus-Samuels, B.; Stewart, C. L.; Reitman, M. L.
  3. Biochemical and Biophysical Research Communications. 2002 291(3): 522-527.
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