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小鼠发育过程中胚胎和成肌细胞中肌肉特异性烯醇化酶的差异表达。

Differential expression of muscle-specific enolase in embryonic and fetal myogenic cells during mouse development.

作者信息

Barbieri G, De Angelis L, Feo S, Cossu G, Giallongo A

机构信息

Istituto di Biologia dello Sviluppo (Consiglio Nazionale delle Ricerche), Roma, Italy.

出版信息

Differentiation. 1990 Dec;45(3):179-84. doi: 10.1111/j.1432-0436.1990.tb00471.x.

Abstract

Three isoforms of the glycolytic enzyme enolase are present in mammals and birds. During development, a switch from the alpha to the beta form takes place in skeletal muscle. In order to investigate the molecular basis of this developmental transition of enolase isoforms, we extracted total RNA from limbs of mouse embryos of different ages, and from cultures of embryonic and fetal myogenic cells. The beta message was detected in limbs from 16-day-old fetuses by Northern-blot analysis and its level was found to increase in newborn and adult muscle; no significant amount of beta mRNA was present in samples from earlier developmental stages, which did however express high levels of the muscle-specific actin mRNA. Analysis of RNA extracted from embryonic and fetal myoblasts differentiated in culture revealed that the level of beta mRNA is about 9-fold higher in fetal myotubes than in embryonic myotubes, although the level of muscle actin is comparable in both types of myotubes. These results were confirmed by S1 nuclease protection experiments. Our data show that the appearance of beta enolase transcripts temporally correlates with the formation of the second generation of muscle fibers and suggest that the developmental transition from alpha to beta enolase is linked to a developmental program which takes place in fetal but not in embryonic muscle.

摘要

糖酵解酶烯醇化酶的三种同工型存在于哺乳动物和鸟类中。在发育过程中,骨骼肌中会发生从α型到β型的转变。为了研究烯醇化酶同工型这种发育转变的分子基础,我们从不同年龄的小鼠胚胎肢体以及胚胎和成肌细胞培养物中提取了总RNA。通过Northern印迹分析在16日龄胎儿的肢体中检测到了β信息,并且发现其水平在新生和成年肌肉中有所增加;在早期发育阶段的样本中未检测到大量的β mRNA,不过这些样本确实表达了高水平的肌肉特异性肌动蛋白mRNA。对从培养中分化的胚胎和成肌细胞提取的RNA进行分析发现,尽管两种类型的肌管中肌肉肌动蛋白的水平相当,但胎儿肌管中β mRNA的水平比胚胎肌管中高约9倍。这些结果通过S1核酸酶保护实验得到了证实。我们的数据表明,β烯醇化酶转录本的出现与第二代肌纤维的形成在时间上相关,并表明从α烯醇化酶到β烯醇化酶的发育转变与一个发生在胎儿而非胚胎肌肉中的发育程序有关。

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