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地塞米松诱导新生大鼠心脏肥大伴有肌球蛋白重链表型和基因转录的变化。

Dexamethasone induced cardiac hypertrophy in newborn rats is accompanied by changes in myosin heavy chain phenotype and gene transcription.

作者信息

Muangmingsuk S, Ingram P, Gupta M P, Arcilla R A, Gupta M

机构信息

The Heart Institute for Children, Hope Childrens Hospital, Illinois, Chicago 60463, USA.

出版信息

Mol Cell Biochem. 2000 Jun;209(1-2):165-73. doi: 10.1023/a:1007128300430.

Abstract

Cardiac hypertrophy has been observed in newborn infants treated with dexamethasone (DEX). This study was undertaken to examine whether DEX-induced hypertrophy in newborn rats is associated with redistribution of cardiac myosin heavy chain (MHC) isoforms and, if so, the effects involve transcriptional regulation. Newborn rats were injected with either DEX (1 mg/kg/day; s.c.) or equivalent volume normal saline for 1, 3, 5, 7 or 9 days. Hypertrophy was quantified by heart dry/wet wt ratios, heart/body wt ratios, and total protein content of the myocardium. Changes in the expression of cardiac MHC mRNA were characterized by northern blot and slot blot analyses, using isoform specific probes for alpha- and beta-MHC genes. DEX effect on alpha-MHC gene transcription was analyzed by transiently transfecting various alpha-MHC promoter/CAT reporter constructs into primary cultures of cardiac myocytes derived from one day old rat pups. DEX administration into newborn rats produced significant cardiac hypertrophy ranging from 23% at day 1 to 59% at 9 days. The hypertrophy was accompanied by immediate increase (83%) in steady state level of the alpha-MHC mRNA within one day and a maximum increase (148%) at 7 days of treatment. The steady state level of beta-MHC mRNA declined by 25% at day 1 and a maximum decrease of 54% at day 7 of DEX treatment. The changes in MHC mRNA were also reflected in their protein levels as determined by V1 and V3 isozyme analysis. DEX treatment of primary cultures of cardiomyocytes following transfection with alpha-MHC promoter/CAT reporter constructs resulted in increased CAT expression in a dose dependent manner. The minimum alpha-MHC gene sequences responding to DEX treatment were located between the -200 to -74-bp region of the gene, resulting in 2-fold and 6-fold activation of CAT reporter after 0.05 and 0.1 mM doses of DEX, respectively. Our data indicate that DEX induced cardiac hypertrophy in newborn rats is accompanied by increased expression of alpha-MHC and decreased expression of beta-MHC. The alpha-MHC effects are mediated in part through transcriptional mechanisms.

摘要

在地塞米松(DEX)治疗的新生儿中观察到心脏肥大。本研究旨在探讨DEX诱导的新生大鼠心脏肥大是否与心肌肌球蛋白重链(MHC)亚型的重新分布有关,如果有关,其影响是否涉及转录调控。给新生大鼠皮下注射DEX(1mg/kg/天)或等量的生理盐水,持续1、3、5、7或9天。通过心脏干重/湿重比、心脏/体重比和心肌总蛋白含量来量化肥大程度。使用α-和β-MHC基因的亚型特异性探针,通过Northern印迹和狭缝印迹分析来表征心脏MHC mRNA表达的变化。通过将各种α-MHC启动子/CAT报告基因构建体瞬时转染到出生1天的大鼠幼崽的心肌细胞原代培养物中,分析DEX对α-MHC基因转录的影响。给新生大鼠注射DEX会导致显著的心脏肥大,从第1天的23%到第9天的59%。肥大伴随着α-MHC mRNA稳态水平在1天内立即增加(83%),在治疗7天时最大增加(148%)。DEX治疗第1天时,β-MHC mRNA稳态水平下降25%,第7天时最大下降54%。如通过V1和V3同工酶分析所确定的,MHC mRNA的变化也反映在其蛋白质水平上。用α-MHC启动子/CAT报告基因构建体转染后,对心肌细胞原代培养物进行DEX处理,导致CAT表达呈剂量依赖性增加。响应DEX处理的最小α-MHC基因序列位于基因的-200至-74bp区域之间,分别在0.05和0.1mM剂量的DEX后导致CAT报告基因2倍和6倍的激活。我们的数据表明,DEX诱导的新生大鼠心脏肥大伴随着α-MHC表达增加和β-MHC表达减少。α-MHC的影响部分是通过转录机制介导的。

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