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法尼基转移酶抑制剂可减轻心肌细胞肥大和基因表达。

A farnesyltransferase inhibitor attenuates cardiac myocyte hypertrophy and gene expression.

作者信息

Calderone A, Abdelaziz N, Colombo F, Schreiber K L, Rindt H

机构信息

Université de Montréal, Departément de Physiologie et Biochimie, et l'Institut de Cardiologie de Montréal, Québec, Canada.

出版信息

J Mol Cell Cardiol. 2000 Jun;32(6):1127-40. doi: 10.1006/jmcc.2000.1150.

Abstract

The overexpression of either oncogenic ras or calmodulin in cardiac myocytes can elicit a hypertrophic response, albeit their recruitment by physiologically relevant stimuli remains unresolved. The present study utilized a pharmacological approach to examine the role of ras and calmodulin in norepinephrine- and endothelin-1-stimulated hypertrophy of neonatal rat cardiac myocytes. The pretreatment of cardiac myocytes with the farnesyltransferase inhibitor BMS-191563 (25 microM) increased the level of unfarnesylated ras in the cytosolic fraction, and caused a concomitant 42 +/- 2% decrease in immunodetectable farnesylated ras in the particulate fraction. In parallel, BMS-191563 pretreatment inhibited norepinephrine-mediated 3H-leucine uptake (80 +/- 10% decrease: n = 6; P<0.01), whereas a significant but less pronounced effect on the endothelin-1 response (46 +/- 6% decrease: n = 6; P<0.05) was observed. The calmodulin inhibitor W7 caused a 50 +/- 10% decrease (n = 8; P<0.05) of norepinephrine stimulated protein synthesis, whereas the endothelin-1 response was unaffected. Consistent with the recruitment of ras, BMS-191563 pretreatment attenuated norepinephrine and endothelin-1-stimulated extracellular signal-regulated kinase (ERK) activity. However, PD098059-mediated inhibition of MEK-dependent stimulation of ERK did not alter the hypertrophic response of either agonist. At the molecular level, the pretreatment with either BMS-191563 or W7 attenuated the norepinephrine-mediated increase of prepro-ANP and -BNP mRNA. Likewise, BMS-191563 caused a significant decrease of endothelin-1-mediated expression of the natriuretic peptide mRNAs, but to a lesser extent, as compared to norepinephrine. Thus, the present study has shown the treatment of neonatal rat cardiac myocytes with a farnesyltransferase inhibitor can attenuate the hypertrophic phenotype in response to physiologically relevant stimuli, thereby supporting a role of the small GTP-binding protein ras. Moreover, these data further suggest alternative ras-independent signaling pathways are also implicated in the hypertrophic response, albeit, there appears to exist a stimulus-specific heterogeneity in their recruitment.

摘要

致癌性Ras或钙调蛋白在心肌细胞中的过表达均可引发肥大反应,尽管它们在生理相关刺激下的募集情况仍未明确。本研究采用药理学方法,研究Ras和钙调蛋白在去甲肾上腺素和内皮素-1刺激新生大鼠心肌细胞肥大中的作用。用法尼基转移酶抑制剂BMS-191563(25 microM)预处理心肌细胞,可增加胞质部分未法尼基化Ras的水平,并使颗粒部分免疫检测到的法尼基化Ras水平相应降低42±2%。同时,BMS-191563预处理抑制了去甲肾上腺素介导的3H-亮氨酸摄取(降低80±10%:n = 6;P<0.01),而对内皮素-1反应有显著但不太明显的影响(降低46±6%:n = 6;P<0.05)。钙调蛋白抑制剂W7使去甲肾上腺素刺激的蛋白质合成降低50±10%(n = 8;P<0.05),而内皮素-1反应未受影响。与Ras的募集一致,BMS-191563预处理减弱了去甲肾上腺素和内皮素-1刺激下的细胞外信号调节激酶(ERK)活性。然而,PD098059介导的对MEK依赖的ERK刺激的抑制并未改变两种激动剂的肥大反应。在分子水平上,用BMS- or W7预处理减弱了去甲肾上腺素介导的前脑钠肽和脑钠肽mRNA的增加。同样,BMS-191563使内皮素-1介导的利钠肽mRNA表达显著降低,但与去甲肾上腺素相比程度较小。因此,本研究表明用法尼基转移酶抑制剂处理新生大鼠心肌细胞可减弱对生理相关刺激的肥大表型,从而支持小GTP结合蛋白Ras的作用。此外,这些数据进一步表明,尽管在其募集中似乎存在刺激特异性异质性,但也存在不依赖Ras的替代信号通路参与肥大反应。

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