首页> 外文期刊>Journal of Molecular Biology >Developmental regulation of the aldolase A muscle-specific promoter during in vivo muscle maturation is controlled by a nuclear receptor binding element.
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Developmental regulation of the aldolase A muscle-specific promoter during in vivo muscle maturation is controlled by a nuclear receptor binding element.

机译:醛缩酶的发育调节在体内肌肉成熟过程中,肌肉特异性启动子由核受体结合元件控制。

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摘要

During the post-natal period, skeletal muscles undergo important modifications leading to the appearance of different types of myofibers which exhibit distinct contractile and metabolic properties. This maturation process results from the activation of the expression of different sets of contractile proteins and metabolic enzymes, which are specific to the different types of myofibers. The muscle-specific promoter of the aldolase A gene (pM) is expressed mainly in fast-twitch glycolytic fibers in adult body muscles. We investigate here how pM is regulated during the post-natal development of different types of skeletal muscles (slow or fast-twitch muscles, head or body muscles). We show that pM is expressed preferentially in prospective fast-twitch muscles soon after birth; pM is up-regulated specifically in body muscles only later in development. This activation pattern is mimicked by a transgene which comprises only the 355 most proximal sequences of pM. Within this region, we identify a DNA element which is required for the up-regulation of the transgene during post-natal development in body muscles. Comparison of nuclear M1-binding proteins from young or adult body muscles show no qualitative differences. Distinct M1-binding proteins are present in both young and adult tongue nuclear extracts, compared to that present in gastrocnemius extracts. Copyright 1999 Academic Press.
机译:在出生后,骨骼肌发生重要的修饰,导致出现不同类型的肌纤维,这些肌纤维表现出明显的收缩和代谢特性。这种成熟过程是由不同组收缩蛋白和代谢酶表达的激活引起的,这些收缩蛋白和代谢酶对不同类型的肌纤维具有特异性。醛缩酶A基因(pM)的肌肉特异性启动子主要在成年人体肌肉中的快速抽搐糖酵解纤维中表达。我们在这里研究在不同类型的骨骼肌(缓慢或快速抽搐的肌肉,头部或身体的肌肉)的产后发育过程中如何调节pM。我们表明,出生后不久,预期的快速抽搐肌肉中优先表达了pM。 pM仅在发育后期才在身体肌肉中上调。该激活模式被仅包含355个pM最接近序列的转基因模拟。在该区域内,我们鉴定出在出生后身体肌肉发育过程中转基因上调所需的DNA元件。来自年轻或成年人体肌肉的核M1结合蛋白的比较没有定性差异。与腓肠肌提取物中存在的M1结合蛋白不同,年轻和成年舌核提取物中均存在。版权所有1999,学术出版社。

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