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July 1, 1984Molecular and Cellular Biology335 citations

Regulation, linkage, and sequence of mouse metallothionein I and II genes.

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PSPeter F. SearleBDBarry L. DavisonGSGary W. Stuart

Key Points

  • The research aims to explore the regulation, sequence, and linkage of mouse metallothionein I and II genes in relation to heavy metals.
  • Sequence comparison of mouse metallothionein I and II genes and those of other mammals
  • Analysis of promoter regions for conserved sequences
  • Induction studies of mouse MT-I and MT-II mRNAs in response to cadmium, dexamethasone, and lipopolysaccharide
  • Mouse MT-I and MT-II genes have a conserved structure with divergent noncoding regions between species.
  • Promoter analysis reveals four blocks of conserved sequences, including TATAAA and a heavy metal-regulated region.
  • MT-I and MT-II mRNAs show similar induction levels in vivo when exposed to cadmium and other stimuli.

Abstract

The mouse metallothionein II (MT-II) gene is located approximately 6 kilobases upstream of the MT-I gene. A comparison of the sequences of mouse MT-I and MT-II genes (as well as those of other mammals) reveals that the coding regions are highly conserved even at "silent" positions but that the noncoding regions and introns are extremely divergent between primates and rodents. There are four blocks of conserved sequences in the promoters of mouse MT-I, mouse MT-II, and human MT-IIA genes; one includes the TATAAA sequence, and another has been implicated in regulation by heavy metals. Mouse MT-I and MT-II mRNAs are induced to approximately the same extent in vivo in response to cadmium, dexamethasone, or lipopolysaccharide. Mouse MT-I and MT-II genes are regulated by metals but not by glucocorticoids after transfection into HeLa cells.

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Cite This Study

Searle et al. (1984) studied this question.

synapsesocial.com/papers/6a2075cbd9aac51eef78057ahttps://doi.org/10.1128/mcb.4.7.1221
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