In vivo DNase I-mediated footprinting analysis along the human bradykinin B1 receptor (BDKRB1) gene promoter: evidence for cell-specific regulation

Author:

ANGERS Martin12,DROUIN Régen12,BACHVAROVA Magdalena3,PARADIS Isabelle12,BISSELL Brad4,HIROMURA Makoto4,USHEVA Anny4,BACHVAROV Dimcho35

Affiliation:

1. Unité de Recherche en Génétique Humaine et Moléculaire, Research Centre, Hôpital St-François d'Assise, Centre Hospitalier Universitaire de Québec, 10 de l'Espinay Street, QC, Canada G1L 3L5

2. Division of Pathology, Department of Medical Biology, Faculty of Medicine, Laval University, QC, Canada

3. Cancer Research Centre, Hôpital l'Hôtel-Dieu de Québec, Centre Hospitalier Universitaire de Québec, 9 rue McMahon, QC, Canada G1R 2J6

4. Division of Endocrinology, Department of Medicine, Beth Israel Deaconess Medical Center Harvard Medical School, 99 Brookline Ave., RN313, Boston, MA 02215, U.S.A.

5. Department of Medicine, Faculty of Medicine, Laval University, QC, Canada

Abstract

By applying in vivo dimethyl sulphate and UV light type C-footprinting analysis, we previously showed that specific DNA sequences in the −1349/+42 core promoter region of the inducible human BDKRB1 (bradykinin B1 receptor) gene correlated with its transcriptional activity. In the present study we used the highly sensitive DNase I in vivo footprinting approach to delineate more precisely the functional domains of the BDKRB1 gene promoter in human SMCs (smooth muscle cells). Human lymphocytes that do not express a functional BDKRB1 were also studied as a reference using dimethyl sulphate, UV light type C and DNase I treatments. An obvious difference was found in the DNase I-footprinting patterns between cellular systems that express a functional BDKRB1 (SMCs) in comparison with human lymphocytes, where randomly distributed nucleosome-like footprinting patterns were found in the bulk of the core promoter region studied. Gel-shift assays and expression studies pointed to the implication of the YY1 and a TBP/TFIIB (TATA-box-binding protein/transcription factor IIB) transcription factor in the regulation of BDKRB1 gene expression in SMCs and possible YY1 involvement in the mechanisms of nuclear factor κB-mediated regulation of the receptor expression. No significant changes in the promoter foot-printing pattern were found after treatment with interleukin-1β or serum (known BDKRB1 gene inducers), indicating that definite regulatory motifs could exist outside the BDKRB1 gene core promoter region studied.

Publisher

Portland Press Ltd.

Subject

Cell Biology,Molecular Biology,Biochemistry

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