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首页> 外文期刊>Developmental biology >DEVELOPMENTAL AND TISSUE-SPECIFIC REGULATION OF THE MURINE CARDIAC ACTIN GENE IN VIVO DEPENDS ON DISTINCT SKELETAL AND CARDIAC MUSCLE-SPECIFIC ENHANCER ELEMENTS IN ADDITION TO THE PROXIMAL PROMOTER
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DEVELOPMENTAL AND TISSUE-SPECIFIC REGULATION OF THE MURINE CARDIAC ACTIN GENE IN VIVO DEPENDS ON DISTINCT SKELETAL AND CARDIAC MUSCLE-SPECIFIC ENHANCER ELEMENTS IN ADDITION TO THE PROXIMAL PROMOTER

机译:体外,离体骨骼和心脏特定肌增强元素对小鼠心脏心肌基因的发育和组织特异性调节

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摘要

Cardiac actin is an early marker of cardiac and skeletal muscle lineages in the mouse. After birth, the gene is downregulated in skeletal muscle. High-level expression of the murine cardiac actin gene in skeletal myotubes in vitro involves distal(-7.8/-7.0 kb) and proximal(-5.4/-3.5 kb) enhancer sequences as well as the proximal promoter (-0.7/+0.1 kb). Transgenic mice carrying an nlacZ reporter gene under the control of different fragments of the upstream region of the cardiac actin gene were generated. This analysis led to the conclusions that (1) the proximal promoter is a weak but tissue specific element in vivo, (2) consistent high-level expression in skeletal muscle depends on the presence of at least one of the enhancers, (3) expression in adult cardiac muscle requires a cardiac enhancer located in the (-5.4/-0.7 kb) region, and (4) a construct containing these three elements gives a strong specific expression of the transgene in the heart throughout the life of the animal and in embryonic skeletal muscle. All transgenes tested reproduce the down-regulation observed in adult skeletal muscle for the cardiac actin gene. Nonuniform expression of these transgenes in the heart may mark cardiomyocytes derived from different cardiac progenitors. (C) 1996 Academic Press, Inc. [References: 52]
机译:心脏肌动蛋白是小鼠心脏和骨骼肌谱系的早期标记。出生后,该基因在骨骼肌中被下调。鼠心肌肌动蛋白基因在骨骼肌管中的高水平表达涉及远端(-7.8 / -7.0 kb)和近端(-5.4 / -3.5 kb)增强子序列以及近端启动子(-0.7 / + 0.1 kb) )。产生了在心脏肌动蛋白基因上游区域的不同片段控制下携带nlacZ报道基因的转基因小鼠。该分析得出以下结论:(1)近端启动子是体内弱但组织特异性的元件,(2)骨骼肌中一致的高水平表达取决于至少一种增强子的存在,(3)表达在成年心肌中,需要位于(-5.4 / -0.7 kb)区域的心脏增强剂,并且(4)包含这三种元素的构建体会在动物的整个生命和整个生命周期中在心脏中产生转基因的强特异性表达。胚胎骨骼肌。所有测试的转基因均会复制成年骨骼肌中肌动蛋白基因的下调。这些转基因在心脏中的不均匀表达可能标志着源自不同心脏祖细胞的心肌细胞。 (C)1996 Academic Press,Inc. [参考:52]

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