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  1. 1.   Mechanism of lipid droplet formation by the yeast Sei1/Ldb16 Seipin complex
  2. Klug, Yoel A.; Deme, Justin C.; Corey, Robin A.; Renne, Mike F.; Stansfeld, Phillip J.; Lea, Susan M.; Carvalho, Pedro
  3. Nature Communications. 2021, Oct 8; 12(1):
  1. 2.   Suppression of the C/EBP family of transcription factors in adipose tissue causes lipodystrophy
  2. Chatterjee, R.; Bhattacharya, P.; Gavrilova, O.; Glass, K.; Moitra, J.; Myakishev, M.; Pack, S.; Jou, W.; Feigenbaum, L.; Eckhaus, M.; Vinson, C.
  3. Journal of Molecular Endocrinology. 2011, Jun; 46(3): 175-192.
  1. 3.   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. 4.   Morphological and molecular course of mitochondrial pathology in cultured human cells exposed long-term to zidovudine
  2. Divi, R. L.; Haverkos, K. J.; Humsi, J. A.; Shockley, M. E.; Thamire, C.; Nagashima, K.; Olivero, O. A.; Poirier, M. C.
  3. Environmental and Molecular Mutagenesis. 2007, Apr-May; 48(3-4): 179-189.
  1. 5.   Nuclear lamin A inhibits adipocyte differentiation: implications for Dunnigan-type familial partial lipodystrophy
  2. Boguslavsky, R. L.; Stewart, C. L.; Worman, H. J.
  3. Human Molecular Genetics. 2006, FEB 15; 15(4): 653-663.
  1. 6.   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. 7.   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. 8.   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. 9.   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. 10.   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. 11.   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. 12.   Aging and nuclear organization: lamins and progeria
  2. Mounkes, L. C.; Stewart, C. L.
  3. Current Opinion in Cell Biology. 2004 16(3): 322-327.
  1. 13.   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. 14.   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. 15.   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.
  1. 16.   Life at the edge: The nuclear envelope and human disease
  2. Burke, B.; Stewart, C. L.
  3. Nature Reviews Molecular Cell Biology. 2002 3(8): 575-585.
  1. 17.   Nuclear envelope defects associated with LMNA mutations cause dilated cardiomyopathy and Emery-Dreifuss muscular dystrophy
  2. Raharjo, W. H.; Enarson, P.; Sullivan, T.; Stewart, C. L.; Burke, B.
  3. Journal of Cell Science. 2001 114(24): 4447-4457.
  1. 18.   Nuclear membrane protein LAP2 beta mediates transcriptional repression alone and together with its binding partner GCL (germ-cell-less)
  2. Nili, E.; Cojocaru, G. S.; Kalma, Y.; Ginsberg, D.; Copeland, N. G.; Gilbert, D. J.; Jenkns, N. A.; Berger, R.; Shaklai, S.; Amariglio, N.; Brok-Simoni, F.; Simon, A. J.; Rechavi, G.
  3. Journal of Cell Science. 2001 114(18): 3297-3307.
  1. 19.   The A-type lamins - Nuclear structural proteins as a focus for muscular dystrophy and cardiovascular diseases
  2. Mounkes, L. C.; Burke, B.; Stewart, C. L.
  3. Trends in Cardiovascular Medicine. 2001 11(7): 280-285.
  1. 20.   The nuclear envelope in muscular dystrophy and cardiovascular diseases
  2. Burke, B.; Mounkes, L. C.; Stewart, C.
  3. Traffic. 2001 2(10): 675-683.
  1. 21.   Life Without White Fat - a Transgenic Mouse
  2. Moitra, J.; Mason, M. M.; Olive, M.; Krylov, D.; Gavrilova, O.; Marcussamuels, B.; Feigenbaum, L.; Lee, E.; Aoyama, T.; Eckhaus, M.; Reitman, M. L.; Vinson, C.
  3. Genes & Development. 1998 12(20): 3168-3181.
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