Showing results (121-130 of 178) with videos related to
Sort By:
Pageof 18
Archives of Biochemistry and Biophysics|August 15, 1988
The in vitro phosphorylation of calmodulin by the insulin receptor tyrosine kinaseJ P Laurino, J R Colca, J D Pearson, et al.Biochemical and Biophysical Research Communications|January 5, 1996
Expression of HIV-1 envelope glycoprotein alters cellular calmodulinW Radding, Z Q Pan, E Hunter, et al.Radiology|September 1, 1976
Imaging of tumors involving bone with 13N-glutamic acidJ M McDonald, A S Gelbard, L P Clarke, et al.Biochemical and Biophysical Research Communications|May 31, 1991
Palmitate stimulates glucose transport in rat adipocytes by a mechanism involving translocation of the insulin sensitive glucose transporter (GLUT4)R W Hardy, J H Ladenson, E J Henriksen, et al.Clinical Biochemistry|February 1, 1981
Comparison of hemoglobin A1c and hemoglobin A1 in diabetic patientsT M James, J E Davis, J M McDonald, et al.The Journal of Biological Chemistry|June 25, 1979
The metabolic fate of 13N-labeled ammonia in rat brainA J Cooper, J M McDonald, A S Gelbard, et al.Immunopharmacology|November 24, 1998
Calmodulin antagonists inhibit apoptosis of CD4+ T-cells from patients with AIDSG Pan, T Zhou, W Radding, et al.The Journal of Biological Chemistry|May 24, 1996
Regulation of avian osteoclastic H+ -ATPase and bone resorption by tamoxifen and calmodulin antagonists. Effects independent of steroid receptorsJ P Williams, H C Blair, M A McKenna, et al.Proceedings of the National Academy of Sciences of the United States of America|October 1, 1989
In vitro tyrosine phosphorylation studies on RAS proteins and calmodulin suggest that polylysine-like basic peptides or domains may be involved in interactions between insulin receptor kinase and its substrateY Fujita-Yamaguchi, S Kathuria, Q Y Xu, et al.International Journal of Sport Nutrition|February 26, 1999
Cross-validation of modified fatness-specific bioelectrical impedance equationsD W Lockner, V H Heyward, S E Griffin, et al.Pageof 18