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December 1, 1999Journal of Clinical Investigation218 citationsOpen Access

Mechanical strain activates BNP gene transcription through a p38/NF-κB–dependent mechanism

FLFaquan LiangDGDavid G. Gardner

Structured PICO

P
Population
Neonatal rat ventricular myocytes in culture
I
Intervention
Mechanical strain, p38 inhibitor SB203580, and cotransfection with wild-type p38 or MKK6AL
C
Comparator
Unstrained cells or cells without inhibitor/cotransfection
O
Outcome
BNP promoter activity and gene expressionsurrogate

Mechanical strain activates BNP gene transcription in ventricular myocytes through a p38 MAPK and NF-kappaB-dependent pathway, highlighting a key molecular mechanism in cardiac hypertrophy.

Abstract

Application of mechanical strain to neonatal rat ventricular myocytes in culture evokes changes in gene expression reminiscent of those that occur with hypertrophy in vivo, such as stimulation of brain natriuretic peptide (BNP) gene expression. Here, we show that a major component of strain-dependent BNP promoter activation results from stimulation of p38 mitogen-activated protein kinase (MAPK) in the cardiac myocyte. Strain increased p38 activity in a time-dependent fashion. The p38 inhibitor SB203580 led to a reduction of approximately 60% in strain-activated human BNP (hBNP) promoter activity. Cotransfection of wild-type p38 increased both basal and strain-dependent promoter activity, while cotransfection with MKK6AL, a dominant-negative inhibitor of p38 MAPK kinase, resulted in partial inhibition of either p38- or strain-activated hBNP promoter activity. p38 MAPK increased hBNP promoter activity through activation of the transcription factor NF-kappaB. Activation of the hBNP promoter by either p38 or strain was mediated by DNA elements present in the 5' flanking sequence of the gene. Mechanical strain promoted assembly of NF-kappaB components on these DNA elements in vitro. Thus, induction of the hBNP promoter by mechanical strain depends, at least in part, on stimulation of p38 and subsequent activation of NF-kappaB. This activation may play an important role in signaling the increased BNP gene expression that accompanies hemodynamic overload and cardiac hypertrophy in vivo.

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Cite This Study

Liang et al. (1999) studied this question.

synapsesocial.com/papers/6a011dae36f190e958b4f056https://doi.org/10.1172/jci7362
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