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March 1, 1997Circulation Research143 citations

Suppression of Angiotensin-Converting Enzyme Expression and Activity by Shear Stress

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MRMark J. RiederRCR Jorge Uriel CarmonaJKJosé Eduardo Krieger

Structured PICO

Does shear stress suppress angiotensin-converting enzyme (ACE) expression and activity in endothelial cells?

P
Population
Bovine pulmonary artery endothelial (BPAE) cells, rabbit aortic endothelial cell line (W3LUC) stably transfected with rat ACE promoter/luciferase construct, and rat abdominal aorta in vivo model
I
Intervention
Shear stress (in vitro: 5 to 20 dyne/cm2 for up to 18 hours; in vivo: stainless steel clip over a 12-mm region of the rat abdominal aorta to restrict vessel diameter and increase blood flow velocity)
C
Comparator
Unsheared cells or normal flow conditions
O
Outcome
ACE expression (mRNA), ACE activity, and ACE promoter activitysurrogate

Elevations in shear stress alter endothelial cell function by suppressing ACE gene and protein expression both in vitro and in vivo.

Abstract

Shear stress caused by the frictional forces of a fluid moving over a cell monolayer is an important regulator of gene expression. In this study, we investigated the effect of shear stress on angiotensin-converting enzyme (ACE) expression and promoter activity in vitro and on local vascular ACE activity in vivo. ACE activity measured in bovine pulmonary artery endothelial (BPAE) cells was reduced by 49.5% after exposure to a shear stress of 20 dyne/cm2 for 18 hours. Short-term shearing (2 hours) elevated ACE activity in BPAE cells, whereas long-term shearing produced a time-dependent reduction in ACE activity by 23.3%, 33.5%, and 48.9% at 8, 12, and 18 hours, respectively. Northern blot analysis revealed that shear stress (20 dyne/cm2 for 18 hours) significantly reduced ACE mRNA expression by 82%. To determine the mechanism of ACE activity and message reduction, the effect of shear on transcriptionally related events was determined in a rabbit aortic endothelial cell line (W3LUC) stably transfected with 1.3 kb of a rat ACE promoter/luciferase construct. Different shear stress magnitudes (5 to 20 dyne/cm2) caused suppression of luciferase activity by an average of 40.7%. ACE promoter activity was suppressed by 2 hours of shear stress (24.7%) and was further inhibited at time periods > 8 hours. In vivo elevations in shear stress were created by placing a stainless steel clip over a 12-mm region of the rat abdominal aorta. Restriction of vessel diameter increased blood flow velocity and caused reduction in vascular ACE activity by 40%. These studies suggest that elevations in the level of shear stress alter endothelial cell function by suppressing ACE gene and protein expression in vitro and in vivo.

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Cite This Study

Rieder et al. (1997) studied this question.

synapsesocial.com/papers/6a1059992badbc352affd741https://doi.org/10.1161/01.res.80.3.312
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