c-Myb-binding sites mediate G1/S-associated repression of the plasma membrane Ca2+-ATPase-1 promoter

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Abstract

We demonstrate that two Myb-binding sites of the mouse plasma membrane Ca2+-ATPase-1 (PMCA1) promoter are required for G1/S cell cycle stage- associated repression of PMCA1 promoter activity. Nuclear run-on experiments revealed G1/S-associated repression of PMCA1 transcription. Ribonuclease protection assays revealed two transcription initiation sites between two Myb-binding sites in the PMCA1 promoter. Gel shift assays showed that c-Myb can bind to wild-type but not point mutated Myb binding sequences of the PMCA1 promoter. Transient transfection assays using cell cycle-synchronized vascular smooth muscle cells (VSMC) and PMCA1 promoter-luciferase constructs showed a 2-fold decrease in reporter activity at G1/S as compared with Go. Overexpression of wild-type c-Myb severely repressed PMCA1 promoter activity at both Go and G1/S while co-transfection of a dominant negative c-Myb, or a construct encoding an anti-c-Myb neutralizing antibody, completely abolished the repression seen at G1/S. Single nucleotide substitutions in the first, second, or both Myb-binding sites alleviated the G1/S-associated repression of PMCA1 promoter activity in transformed rat VSMC and primary mouse VSMC cultures. We conclude that c-Myb mediates G1/S-associated transcriptional repression of the PMCA1 Ca2+ pump in rodent VSMC by direct binding to the PMCA1 promoter.

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Afroze, T., & Husain, M. (2000). c-Myb-binding sites mediate G1/S-associated repression of the plasma membrane Ca2+-ATPase-1 promoter. Journal of Biological Chemistry, 275(12), 9062–9069. https://doi.org/10.1074/jbc.275.12.9062

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