首页   按字顺浏览 期刊浏览 卷期浏览 Characterization of a cGMP-Response Element in the Guanylyl Cyclase/Natriuretic Peptide...
Characterization of a cGMP-Response Element in the Guanylyl Cyclase/Natriuretic Peptide Receptor AGene Promoter

 

作者: David Hum,   Sandrine Besnard,   Rocio Sanchez,   Dominic Devost,   Francis Gossard,   Pavel Hamet,   Johanne Tremblay,  

 

期刊: Hypertension: Journal of The American Heart Association  (OVID Available online 2004)
卷期: Volume 43, issue 6  

页码: 1270-1278

 

ISSN:0194-911X

 

年代: 2004

 

出版商: OVID

 

关键词: cyclic GMP;natriuretic peptides;receptors;atrial natriuretic factor

 

数据来源: OVID

 

摘要:

Previous studies have shown that atrial natriuretic peptide (ANP) can inhibit transcription of its receptor, guanylyl cyclase A, by a mechanism dependent on cGMP and have suggested the presence of a putative cGMP-response element (cGMP-RE) in theNpr1gene promoter. To localize and characterize the putativecis-acting element, we have subcloned a 1520-bp fragment of the ratNpr1promoter in an expression vector containing the luciferase reporter gene. Several fragments, generated by exonuclease III-directed deletions, were transiently transfected into cells to measure their promoter activity. Deletion from −1520 to −1396 of a 1520-bp-longNpr1promoter led to a 5-fold increase in luciferase activity. Subsequent deletion to the position −1307 resulted in a decrease of luciferase activity by 90%. Preincubation of cells with 100 nM of ANP or 100 μM 8-bromo-cGMP inhibited luciferase activity of the 1520-bp and 1396-bp-long fragments, but not the activity of the 1307-bp fragment, suggesting that the cGMP-RE is localized between positions −1396 and −1307. The cGMP regulatory region was narrowed by gel shift assays and footprinting to position −1372 to −1354 from the transcription start site ofNpr1and indicated its interaction with transcriptional factor(s). Cross-competition experiments with mutated oligonucleotides led to the definition of a consensus sequence (−1372AaAtRKaNTTCaAcAKTY −1354) for the novel cGMP-RE, which is conserved in the human (75% identity) and mouse (95% identity)Npr1promoters.

 

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