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Dysferlin stabilizes stress-induced Ca2+ signaling in thetr..:
Kerr, Jaclyn P.
;
Ziman, Andrew P.
;
Mueller, Amber L.
...
Proceedings of the National Academy of Sciences of the United States of America. 110 (2013) 51 - p. 20831-20836 , 2013
Link:
https://www.jstor.org/stable/23761639
RT Journal T1
Dysferlin stabilizes stress-induced Ca2+ signaling in thetransverse tubule membrane
UL https://suche.suub.uni-bremen.de/peid=jstor-23761639&Exemplar=1&LAN=DE A1 Kerr, Jaclyn P. A1 Ziman, Andrew P. A1 Mueller, Amber L. A1 Muriel, Joaquin M. A1 Kleinhans-Welte, Emily A1 Gumerson, Jessica D. A1 Vogel, Steven S. A1 Ward, Christopher W. A1 Roche, Joseph A. A1 Bloch, Robert J. PB NATIONAL ACADEMY OF SCIENCES YR 2013 SN 0027-8424 SN 1091-6490 K1 Biological sciences K1 Biology K1 Anatomy K1 Musculoskeletal system K1 Muscle tissues K1 Skeletal muscle K1 Body tissues K1 Muscles K1 Health sciences K1 Medical sciences K1 Immunology K1 Immune system K1 Immune response K1 Adaptive immunity K1 Active immunity K1 Humoral immunity K1 Antibodies K1 Applied sciences K1 Engineering K1 Industrial engineering K1 Manufacturing engineering K1 Manufacturing K1 Manufacturing processes K1 Dyeing K1 Dyes K1 Physiology K1 Body composition K1 Body fluids K1 Blood K1 Blood cells K1 Leukocytes K1 Macrophages K1 Physical sciences K1 Chemistry K1 Chemical compounds K1 Chemicals K1 Polymers K1 Biopolymers K1 Proteins K1 Medical conditions K1 Physical trauma K1 Cytology K1 Cell biology K1 Cellular structures K1 Cell membranes K1 Diseases K1 Musculoskeletal diseases K1 Muscular diseases K1 Zoology K1 Animals K1 Mammals K1 Rodents K1 Mice JF Proceedings of the National Academy of Sciences of the United States of America VO 110 IS 51 SP 20831 OP 20836 LK http://dx.doi.org/https://www.jstor.org/stable/23761639 DO https://www.jstor.org/stable/23761639 SF ELIB - SuUB Bremen
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