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Molecular and Cellular Biology|April 1, 1993
Mouse GATA-4: a retinoic acid-inducible GATA-binding transcription factor expressed in endodermally derived tissues and heartR J Arceci, A A King, M C Simon, et al.Blood|September 18, 1997
Regulation of the serum concentration of thrombopoietin in thrombocytopenic NF-E2 knockout miceR A Shivdasani, P Fielder, G A Keller, et al.American Journal of Human Genetics|September 1, 1983
beta-Thalassemia due to a deletion of the nucleotide which is substituted in the beta S-globin geneH H Kazazian, S H Orkin, C D Boehm, et al.The Journal of Clinical Investigation|November 1, 1990
Human neutrophil cytochrome b light chain (p22-phox). Gene structure, chromosomal location, and mutations in cytochrome-negative autosomal recessive chronic granulomatous diseaseM C Dinauer, E A Pierce, G A Bruns, et al.Blood|May 1, 1989
Absence of both the 91kD and 22kD subunits of human neutrophil cytochrome b in two genetic forms of chronic granulomatous diseaseC A Parkos, M C Dinauer, A J Jesaitis, et al.Proceedings of the National Academy of Sciences of the United States of America|June 19, 2001
The Friend of GATA proteins U-shaped, FOG-1, and FOG-2 function as negative regulators of blood, heart, and eye development in DrosophilaN Fossett, S G Tevosian, K Gajewski, et al.Cell Differentiation|December 1, 1984
Activity of X-linked genes in stem and differentiated Mus musculus X Mus caroli hybrid cellsK Huebner, L Nagarajan, E deJesus, et al.The New England Journal of Medicine|July 21, 1988
Partial correction of the phagocyte defect in patients with X-linked chronic granulomatous disease by subcutaneous interferon gammaR A Ezekowitz, M C Dinauer, H S Jaffe, et al.Development (Cambridge, England)|August 9, 2001
Primitive erythropoiesis in the Xenopus embryo: the synergistic role of LMO-2, SCL and GATA-binding proteinsP E Mead, A E Deconinck, T L Huber, et al.Haematologia|January 1, 1986
First occurrence of Hb H in HungaryM Horányi, J Földi, J G Szelényi, et al.Pageof 73