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The Journal of Biological Chemistry|March 15, 1986
Localization of phospholamban in slow but not fast canine skeletal muscle fibers. An immunocytochemical and biochemical studyA O Jorgensen, L R JonesAnnals of the New York Academy of Sciences|December 22, 1999
High-level coexpression of the canine cardiac calcium pump and phospholamban in Sf21 insect cellsJ M Autry, L R JonesThe Journal of Biological Chemistry|June 5, 1993
Residues 2-25 of phospholamban are insufficient to inhibit Ca2+ transport ATPase of cardiac sarcoplasmic reticulumL R Jones, L J FieldJournal of Dairy Science|June 1, 1995
An approach to summarize somatic cell score trends for a data-driven, decision support systemH G Allore, L R JonesThe Journal of Biological Chemistry|June 20, 1997
Functional Co-expression of the canine cardiac Ca2+ pump and phospholamban in Spodoptera frugiperda (Sf21) cells reveals new insights on ATPase regulationJ M Autry, L R JonesThe Journal of Biological Chemistry|October 10, 1983
Rapid purification of calsequestrin from cardiac and skeletal muscle sarcoplasmic reticulum vesicles by Ca2+-dependent elution from phenyl-sepharoseS E Cala, L R JonesThe Journal of Biological Chemistry|February 25, 1994
GRP94 resides within cardiac sarcoplasmic reticulum vesicles and is phosphorylated by casein kinase IIS E Cala, L R JonesJournal of Photochemistry and Photobiology. B, Biology|December 1, 1994
Singlet oxygen generation by Photofrin in homogeneous and light-scattering mediaL R Jones, L I GrossweinerPhysiological Reviews|October 28, 1998
Phospholamban: protein structure, mechanism of action, and role in cardiac functionH K Simmerman, L R JonesJournal of the American Veterinary Medical Association|June 1, 1987
Herd management and prevalence of mastitis in dairy herds with high and low somatic cell countsR J Erskine, R J Eberhart, L J Hutchinson, et al.Pageof 20