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Proceedings of the National Academy of Sciences of the United States of America|October 1, 1991
Retrotransposition of a mouse L1 elementJ P Evans, R D PalmiterProceedings of the National Academy of Sciences of the United States of America|February 15, 1994
Regulation of metallothionein genes by heavy metals appears to be mediated by a zinc-sensitive inhibitor that interacts with a constitutively active transcription factor, MTF-1R D PalmiterToxicology and Applied Pharmacology|November 1, 1995
Constitutive expression of metallothionein-III (MT-III), but not MT-I, inhibits growth when cells become zinc deficientR D PalmiterThe Journal of Biological Chemistry|December 25, 1977
Prevention of NH2-terminal acetylation of proteins synthesized in cell-free systemsR D PalmiterProceedings of the National Academy of Sciences of the United States of America|July 22, 1998
The elusive function of metallothioneinsR D PalmiterNeuroscience|December 3, 2014
Specific contributions of N-methyl-D-aspartate receptors in the dorsal striatum to cognitive flexibilityM Darvas, R D PalmiterMolecular and Cellular Biology|March 1, 1984
Induction of metallothionein-I mRNA in cultured cells by heavy metals and iodoacetate: evidence for gratuitous inducersD M Durnam, R D PalmiterBiology of Reproduction|January 1, 1994
Testis-specific and ubiquitous proteins bind to functionally important regions of the mouse protamine-1 promoterB P Zambrowicz, R D PalmiterProceedings of the National Academy of Sciences of the United States of America|April 1, 1981
Amplification of the metallothionein-I gene in cadmium-resistant mouse cellsL R Beach, R D PalmiterPageof 39