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Inhibition of TFG function causes hereditary axondegenerati..:
Beetz, Christian
;
Johnson, Adam
;
Schuh, Amber L.
...
Proceedings of the National Academy of Sciences of the United States of America. 110 (2013) 13 - p. 5091-5096 , 2013
Link:
https://www.jstor.org/stable/42583415
RT Journal T1
Inhibition of TFG function causes hereditary axondegeneration by impairing endoplasmic reticulumstructure
UL https://suche.suub.uni-bremen.de/peid=jstor-42583415&Exemplar=1&LAN=DE A1 Beetz, Christian A1 Johnson, Adam A1 Schuh, Amber L. A1 Thakur, Seema A1 Varga, Rita-Eva A1 Fothergill, Thomas A1 Hertel, Nicole A1 Bomba-Warczak, Ewa A1 Thiele, Holger A1 Nürnberg, Gudrun A1 Altmüller, Janine A1 Saxena, Renu A1 Chapman, Edwin R. A1 Dent, Erik W. A1 Nürnberg, Peter A1 Audhya, Anjon PB National Academy of Sciences YR 2013 SN 0027-8424 SN 1091-6490 K1 Biological sciences K1 Biology K1 Genetics K1 Population genetics K1 Genetic variation K1 Genetic mutation K1 Cytology K1 Cell biology K1 Cells K1 Neurons K1 Health sciences K1 Medical conditions K1 Diseases K1 Nervous system diseases K1 Hereditary spastic paraplegia K1 Cellular structures K1 Intracellular space K1 Cytoplasm K1 Cytoplasmic structures K1 Cytoskeleton K1 Microtubules K1 Applied sciences K1 Computer science K1 Computer programming K1 Programming methods K1 Logic programming K1 Sequencing K1 Organelles K1 Endoplasmic reticulum K1 Anatomy K1 Nervous system K1 Nerves K1 Nerve fibers K1 Axons K1 Disorders K1 Physical disorders K1 Musculoskeletal disorders K1 Muscle hypertonia K1 Muscle spasticity K1 Cranial nerve diseases K1 Optic nerve 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 13 SP 5091 OP 5096 LK http://dx.doi.org/https://www.jstor.org/stable/42583415 DO https://www.jstor.org/stable/42583415 SF ELIB - SuUB Bremen
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