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The Journal of Cell Biology|July 1, 1994
Sorting signals in the MHC class II invariant chain cytoplasmic tail and transmembrane region determine trafficking to an endocytic processing compartmentC G Odorizzi, I S Trowbridge, L Xue, et al.Molecular and Cellular Biology|August 24, 1999
Protein kinase A-dependent and -independent signaling pathways contribute to cyclic AMP-stimulated proliferationL A Cass, S A Summers, G V Prendergast, et al.Proceedings of the National Academy of Sciences of the United States of America|May 1, 1990
The insulin receptor with phenylalanine replacing tyrosine-1146 provides evidence for separate signals regulating cellular metabolism and growthP A Wilden, J M Backer, C R Kahn, et al.Magnetic Resonance in Medicine|May 20, 1999
Nm23-transfected MDA-MB-435 human breast carcinoma cells form tumors with altered phospholipid metabolism and pH: a 31P nuclear magnetic resonance study in vivo and in vitroZ M Bhujwalla, E O Aboagye, R J Gillies, et al.Nature|March 10, 2001
GTPase activity of dynamin and resulting conformation change are essential for endocytosisB Marks, M H Stowell, Y Vallis, et al.The Journal of Biological Chemistry|November 15, 1991
Effects of farnesylcysteine analogs on protein carboxyl methylation and signal transductionC Volker, R A Miller, W R McCleary, et al.Cell|August 26, 1988
Mutation of the insulin receptor at tyrosine 960 inhibits signal transmission but does not affect its tyrosine kinase activityM F White, J N Livingston, J M Backer, et al.Biochemical and Biophysical Research Communications|March 17, 1995
Effects of 5 alpha-dihydrotestosterone (DHT) on the transcription of nm23 and c-myc genes in human prostatic LNCaP cellsI Yoshimura, J M Wu, Y Chen, et al.International Journal of Cancer|November 4, 2000
Expression of a catalytically inactive H118Y mutant of nm23-H2 suppresses the metastatic potential of line IV Cl 1 human melanoma cellsC V Hamby, R Abbi, N Prasad, et al.Proceedings of the National Academy of Sciences of the United States of America|June 15, 1993
Optimizing transmembrane domain helicity accelerates insulin receptor internalization and lateral mobilityE Goncalves, K Yamada, H S Thatte, et al.Pageof 17