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甲状腺激素诱导的牛蛙蝌蚪变态期尾肌中肌球蛋白重链基因的表达

Expression of the myosin heavy chain genes in the tail muscle of thyroid hormone-induced metamorphosing Rana catesbeiana tadpoles.

作者信息

Hu H, Merrifield P, Atkinson B G

机构信息

Department of Zoology, University of Western Ontario, London, Canada.

出版信息

Dev Genet. 1999;24(1-2):151-64. doi: 10.1002/(SICI)1520-6408(1999)24:1/2<151::AID-DVG14>3.0.CO;2-4.

Abstract

In tadpoles of the North American bullfrog, Rana catesbeiana, spontaneous and thyroid hormone (T3)-induced metamorphosis is characterized by regression of the tail, which is preceded by a decrease in total protein synthesis in tail tissues. We have demonstrated that thyroid hormone treatment of a tadpole does not affect the synthesis of all proteins equally in the tadpole tail muscle. For example, the synthesis of myosin heavy chains (MHCs) is depressed within 1 day and decreases to 45% of control values after 5 days of T3 treatment, whereas the decreased synthesis of soluble muscle proteins is transient and returns to above control levels by day 5. To determine whether the hormone-induced decrease in MHC synthesis is the result of changes in the transcription of translation of MHC mRNAs, we isolated cDNAs complementary to five different MHC mRNAs from a tail muscle cDNA library and used them to examine the levels of each MHC mRNA in the tail muscle of T3-treated tadpoles. mRNAs that recognize the cDNAs for these five different MHCs are all expressed in the tadpole tail and limb muscles, as well as in the adult leg muscles. MHC mRNAs unique to tadpole tail were not detected. Interestingly, the relative amounts of mRNA for four of the five MHCs increase in tail muscle after T3 treatment of the tadpole, suggesting that repression of MHC gene expression at the protein level does not result from a decrease in the amount of MHC mRNAs. Rather, these results support the contention that the decreased synthesis of MHCs in the tail muscle of T3-treated tadpoles is caused by this hormone, either directly or indirectly, depressing the translation of the MHC mRNAs in this tissue. These results, coupled with the observation that the synthesis of soluble muscle proteins is depressed only in a transient fashion, suggest that T3 may be initiating the expression of a gene(s) that encodes a protein(s) responsible for inhibiting the translation of the MHCs and, perhaps, other structural proteins in the tadpole tail muscle. Whatever the case, the translational regulation of MHC synthesis occurs well before any degradation of the tail tissue is evident and appears to be one of the earliest events in the hormone-induced cell death program of the tadpole tail muscle.

摘要

在北美牛蛙(Rana catesbeiana)蝌蚪中,自发变态和甲状腺激素(T3)诱导的变态以尾部退化特征,在尾部组织中总蛋白质合成减少之前就会出现这种情况。我们已经证明,用甲状腺激素处理蝌蚪并不会同等程度地影响蝌蚪尾部肌肉中所有蛋白质的合成。例如,肌球蛋白重链(MHC)的合成在1天内就会受到抑制,在T3处理5天后降至对照值的45%,而可溶性肌肉蛋白合成的减少是短暂的,到第5天会恢复到对照水平以上。为了确定激素诱导的MHC合成减少是否是MHC mRNA转录或翻译变化的结果,我们从尾部肌肉cDNA文库中分离出与五种不同MHC mRNA互补的cDNA,并用于检测T3处理的蝌蚪尾部肌肉中每种MHC mRNA的水平。识别这五种不同MHC cDNA的mRNA在蝌蚪尾部和肢体肌肉以及成年腿部肌肉中均有表达。未检测到蝌蚪尾部特有的MHC mRNA。有趣的是,在蝌蚪经T3处理后,尾部肌肉中五种MHC中的四种mRNA的相对量增加,这表明MHC基因在蛋白质水平上的表达抑制并非源于MHC mRNA量的减少。相反,这些结果支持这样的观点,即T3处理的蝌蚪尾部肌肉中MHC合成的减少是由这种激素直接或间接抑制该组织中MHC mRNA的翻译所致。这些结果,再加上可溶性肌肉蛋白合成仅以短暂方式受到抑制的观察结果,表明T3可能启动了一个基因的表达,该基因编码一种负责抑制蝌蚪尾部肌肉中MHC以及可能其他结构蛋白翻译的蛋白质。无论如何,MHC合成的翻译调控在尾部组织明显降解之前就已发生,并且似乎是蝌蚪尾部肌肉激素诱导的细胞死亡程序中最早的事件之一。

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