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Am J Physiol Heart Circ Physiol 284: H1398-H1407, 2003. First published January 9, 2003; doi:10.1152/ajpheart.00737.2002
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Vol. 284, Issue 4, H1398-H1407, April 2003

Human SM22alpha BAC encompasses regulatory sequences for expression in vascular and visceral smooth muscles at fetal and adult stages

Rui Xu1, Ye-Shih Ho3, Raquel P. Ritchie2, and Li Li1,2,3

1 Department of Internal Medicine, 2 Center for Molecular Medicine and Genetics, and 3 Environmental Health Sciences Center, Wayne State University, Detroit, Michigan 48201

The SM22alpha gene has widely been used to study the regulatory mechanisms of smooth muscle cell (SMC) gene expression during cardiovascular development. To determine the regulatory mechanisms for the evolutionarily conserved human SM22alpha (hSM22alpha ) gene, we demonstrated that 445 bp upstream DNA sequences of hSM22alpha gene exhibited a high transcriptional activity in arterial SMC, not in venous nor in visceral SMCs during embryogensis. However, this promoter was gradually turned off in adulthood. Inclusion of the first intron in this promoter suppressed the promoter activity in pulmonary trunk arterial SMCs, whereas the expression in other systemic vasculature remained similar to that of the hSM22-445 promoter during the fetal and adult stages. To determine whether additional sequences are required for SM22alpha expression in all subtypes of SMCs, we examined the expression of a bacterial artificial chromosome containing the hSM22alpha locus in transgenic mice. The hSM22alpha transgene showed similar developmental expression patterns as the endogenous mouse SM22alpha gene, suggesting that this bacterial artificial chromosome contains essential regulatory sequences for its expression in arterial, venous, and visceral tissues during development.

bacterial artificial chromosome; regulatory element; intron; pulmonary trunk


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