Bruneau B G, de Bold A J
University of Ottawa Heart Institute, Ottawa Civic Hospital, Ontario, Canada.
Cardiovasc Res. 1994 Oct;28(10):1519-25. doi: 10.1093/cvr/28.10.1519.
Important physiological and pathophysiological conditions are associated with changes in secretion and synthesis of atrial natriuretic factor (ANF) and brain natriuretic peptide (BNP). The aim of this study was to examine the effects of mechanical stretch and endothelin-1 on ANF and BNP secretion and gene expression in isolated adult rat atria, as paradigms for mechanical and endocrine stimulation of atrial tissue. The expression of the early response genes c-fos, c-jun, Egr-1, and c-myc was also studied, since their protein products may be involved in controlling natriuretic peptide gene expression.
Isolated rat atria were stimulated by stretch (5 g) or endothelin-1 (10(-7) M) for 30 min, 2 h, or 4 h. ANF and BNP secretion was measured by radioimmunoassay, and relative mRNA levels were determined by northern blotting.
Atrial stretch resulted in an immediate 1.8-fold increase in ANF release, which returned to basal levels after 160 min. Endothelin-1 caused a gradual increase in ANF release, up to 2.3 times basal levels, and thereafter returned towards basal levels. BNP secretion was increased threefold by endothelin-1, and remained significantly raised for 90 min. BNP mRNA levels were transiently increased by 33% after 2 h of endothelin-1 stimulation. Stretch increased c-fos mRNA levels (+55%) and Egr-1 mRNA levels (+70%) after 2 h, and increased c-myc mRNA levels (+69%) after 4 h. Endothelin-1 increased Egr-1 mRNA levels up to +767% after 4 h.
Endothelin-1 stimulates BNP secretion from rat atria; this is followed by an increase in BNP mRNA levels. Conversely, acute secretion of ANF by stretch or endothelin-1 is not accompanied by changes in ANF mRNA levels. Atrial stretch results in changes in the expression of the early response genes c-fos, Egr-1, and c-myc, while endothelin-1 stimulates Egr-1 expression. The specific changes in natriuretic peptide and early response gene expression reveal distinct mechanisms of modulation of atrial gene expression by mechanical and endocrine stimuli.
重要的生理和病理生理状况与心房利钠因子(ANF)和脑利钠肽(BNP)的分泌及合成变化相关。本研究旨在探讨机械牵张和内皮素 -1对成年大鼠离体心房中ANF和BNP分泌及基因表达的影响,以此作为心房组织机械性和内分泌性刺激的范例。同时还研究了早期反应基因c - fos、c - jun、Egr - 1和c - myc的表达,因为它们的蛋白质产物可能参与调控利钠肽基因的表达。
将离体大鼠心房用牵张(5 g)或内皮素 -1(10⁻⁷ M)刺激30分钟、2小时或4小时。通过放射免疫分析法测定ANF和BNP的分泌,并通过Northern印迹法测定相对mRNA水平。
心房牵张导致ANF释放立即增加1.8倍,160分钟后恢复至基础水平。内皮素 -1使ANF释放逐渐增加,最高可达基础水平的2.3倍,之后又恢复至基础水平。内皮素 -1使BNP分泌增加3倍,并在90分钟内持续显著升高。内皮素 -1刺激2小时后,BNP mRNA水平短暂升高33%。牵张2小时后c - fos mRNA水平升高(+55%),Egr - 1 mRNA水平升高(+70%),4小时后c - myc mRNA水平升高(+69%)。内皮素 -1刺激4小时后Egr - 1 mRNA水平升高高达+767%。
内皮素 -1刺激大鼠心房分泌BNP;随后BNP mRNA水平升高。相反,牵张或内皮素 -1引起的ANF急性分泌并未伴随ANF mRNA水平的变化。心房牵张导致早期反应基因c - fos、Egr - 1和c - myc的表达发生变化,而内皮素 -1刺激Egr - 1表达。利钠肽和早期反应基因表达的特定变化揭示了机械性和内分泌性刺激对心房基因表达的不同调控机制。