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Blood|August 8, 1998
The distal cytoplasmic domain of the erythropoietin receptor induces granulocytic differentiation in 32D cellsK W Harris, X J Hu, S Schultz, et al.Proceedings of the National Academy of Sciences of the United States of America|August 1, 1980
Cotransfer of circular and linear prokaryotic and eukaryotic DNA sequences into mouse cellsN Hsiung, H Warrick, J K deRiel, et al.Molecular and Cellular Biology|April 1, 1997
High levels of human gamma-globin gene expression in adult mice carrying a transgene of deletion-type hereditary persistence of fetal hemoglobinM O Arcasoy, M Romana, M E Fabry, et al.Nature|January 24, 1985
A point mutation in the A gamma-globin gene promoter in Greek hereditary persistence of fetal haemoglobinF S Collins, J E Metherall, M Yamakawa, et al.The Journal of Biological Chemistry|June 30, 2000
Characterization of the interaction between protein 4.1R and ZO-2. A possible link between the tight junction and the actin cytoskeletonS N Mattagajasingh, S C Huang, J S Hartenstein, et al.The Journal of Biological Chemistry|March 29, 2001
The prototypical 4.1R-10-kDa domain and the 4.1g-10-kDa paralog mediate fodrin-actin complex formationA Kontrogianni-Konstantopoulos, C S Frye, E J Benz, et al.Blood|September 25, 1992
Changes in Na,K-ATPase gene expression during granulocytic differentiation of HL60 cellsS K Chambers, M Gilmore-Hebert, B M Kacinski, et al.The Journal of Cell Biology|March 1, 1990
Heterogeneity of mRNA and protein products arising from the protein 4.1 gene in erythroid and nonerythroid tissuesT K Tang, Z Qin, T Leto, et al.Gene|December 1, 1980
Nucleotide sequence of human G gamma globin messenger RNAC Cavallesco, B G Forget, J K deRiel, et al.Proceedings of the National Academy of Sciences of the United States of America|June 1, 1974
Nucleotide sequences of human globin messenger RNAC A Marotta, B G Forget, S M Weissman, et al.Pageof 22