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Princess Takamatsu Symposia|January 1, 1986
Detection of genes with potential of suppressing transforming activity of the v-Ki-ras oncogeneM Noda, Y IkawaProceedings of the National Academy of Sciences of the United States of America|September 13, 1994
Activated Ki-Ras complements erythropoietin signaling in CTLL-2 cells, inducing tyrosine phosphorylation of a 160-kDa proteinY Yamamura, M Noda, Y IkawaLeukemia|April 1, 1994
Erythropoietin receptor and interleukin-2 receptor use different downstream signaling pathways for proliferation and apoptosis-blockY Yamamura, M Noda, Y IkawaLeukemia|April 1, 1997
Activation of the JAK1-STAT5 pathway by binding of the Friend virus gp55 glycoprotein to the erythropoietin receptorY Yamamura, H Senda, M Noda, et al.Proceedings of the National Academy of Sciences of the United States of America|June 1, 1990
Genetic analysis of the Kirsten-ras-revertant 1 gene: potentiation of its tumor suppressor activity by specific point mutationsH Kitayama, T Matsuzaki, Y Ikawa, et al.The Journal of Biological Chemistry|August 25, 1988
Possible involvement of two signaling pathways in induction of neuron-associated properties by v-Ha-ras gene in PC12 cellsY Sugimoto, M Noda, H Kitayama, et al.Japanese Journal of Cancer Research : Gann|May 1, 1990
A domain responsible for the transformation suppressor activity in Krev-1 proteinH Kitayama, T Matsuzaki, Y Ikawa, et al.Cell|January 13, 1989
A ras-related gene with transformation suppressor activityH Kitayama, Y Sugimoto, T Matsuzaki, et al.Cytogenetics and Cell Genetics|January 1, 1993
Mapping of the KREV1 transformation suppressor gene and its pseudogene (KREV1P) to human chromosome 1p13.3 and 14q24.3, respectively, by fluorescence in situ hybridizationS Takai, N Nishino, H Kitayama, et al.Environmental Health Perspectives|June 1, 1991
Genetic analysis of the K-rev-1 transformation-suppressor geneH Kitayama, T Matsuzaki, Y Sugimoto, et al.Pageof 85