Gustafson T A, Bahl J J, Markham B E, Roeske W R, Morkin E
University Heart Center, University of Arizona College of Medicine, Tucson 85724.
J Biol Chem. 1987 Sep 25;262(27):13316-22.
Thyroid hormone regulates the expression of ventricular myosin isoenzymes by causing an accumulation of alpha-myosin heavy chain (MHC) mRNA and inhibiting expression of beta-MHC mRNA. However, the mechanism of thyroid hormone action has been difficult to examine in vivo because of its diverse actions. Accordingly, hormonal control of expression of six MHC isoform mRNAs and cardiac and skeletal alpha-actin mRNAs was studied in primary cultures of fetal rat heart myocytes grown in defined medium. The results indicate that in the absence of thyroid hormone, cultured heart cells express predominantly beta-MHC and cardiac alpha-actin mRNAs. Addition of 3,5,3'-triiodo-L-thyronine (T3) caused a rapid induction of alpha-MHC mRNA and decreased beta-MHC mRNA levels without affecting the skeletal muscle MHC mRNAs. There was an almost parallel change in the myosin isoenzymes. Cardiac alpha-actin mRNA levels were transiently increased by T3 treatment, but skeletal alpha-actin was unaffected. Elimination of insulin and epithelial growth factor from the medium did not alter the effects of T3 on cardiac MHC mRNA expression. Addition of various adrenergic agents to the medium had no appreciable effect on cardiac MHC mRNA expression despite the presence of functionally coupled alpha- and beta-adrenergic receptors. Addition of steroid hormones, muscarinic agents, and glucagon to the medium also had no effect. Thus, under defined conditions, T3 is able to regulate MHC gene expression at a pretranslational level without the need for other exogenous factors.
甲状腺激素通过促使α-肌球蛋白重链(MHC)mRNA积累并抑制β-MHC mRNA表达来调节心室肌球蛋白同工酶的表达。然而,由于甲状腺激素作用的多样性,其在体内的作用机制一直难以研究。因此,在限定培养基中培养的胎鼠心肌细胞原代培养物中,研究了六种MHC同工型mRNA以及心脏和骨骼肌α-肌动蛋白mRNA表达的激素调控。结果表明,在无甲状腺激素的情况下,培养的心脏细胞主要表达β-MHC和心脏α-肌动蛋白mRNA。添加3,5,3'-三碘-L-甲状腺原氨酸(T3)可迅速诱导α-MHC mRNA表达并降低β-MHC mRNA水平,而不影响骨骼肌MHC mRNA。肌球蛋白同工酶也有几乎平行的变化。T3处理可使心脏α-肌动蛋白mRNA水平短暂升高,但骨骼肌α-肌动蛋白不受影响。从培养基中去除胰岛素和上皮生长因子不会改变T3对心脏MHC mRNA表达的影响。尽管存在功能偶联的α-和β-肾上腺素能受体,但向培养基中添加各种肾上腺素能药物对心脏MHC mRNA表达没有明显影响。向培养基中添加类固醇激素、毒蕈碱药物和胰高血糖素也没有作用。因此,在限定条件下,T3能够在翻译前水平调节MHC基因表达,而无需其他外源性因素。