转基因动物骨骼肌和心肌基因表达的靶向性研究。

A T Sands, F DeMayo, X Lei, R J Schwartz
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引用次数: 0

摘要

研究了鸡α -骨骼肌动蛋白启动子区域与报告基因氯霉素乙酰转移酶(chloramphenicol acetyl transferase, CAT)融合对转录的组织限制和发育增强作用。在含有鸡α -骨骼肌动蛋白启动子的8个表达转基因小鼠系中,有6个与CAT融合,在骨骼肌组织中产生了优先的转基因转录,类似于内源性小鼠α -骨骼肌动蛋白基因。8个细胞系中有2个细胞系偏离了骨骼肌表达的首选模式,转基因主要在心脏中表达,心脏组织主要含有心脏肌动蛋白同种异构体。在发育过程中,由转基因启动子产生了从胚胎心脏到胎儿和新生儿骨骼肌表达的转变,这种调节模式类似于内源性α -骨骼肌动蛋白基因。转基因表达偏离内源基因的实例暗示了高阶肌肉基因调控机制的存在。
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Targeting of gene expression to skeletal and cardiac muscle of trangenic animals.

The tissue restricted and developmental potentiation of transcription by chicken alpha-skeletal actin promoter regions fused to the reporter gene chloramphenicol acetyl transferase (CAT) were characterized in transgenic mice. Six of eight expressing transgenic mouse lines containing the chicken alpha-skeletal actin promoter fused to CAT resulted in preferential transgene transcription in skeletal muscle tissue, similar to the endogenous mouse alpha-skeletal actin gene. Two of the eight lines departed from the preferred pattern of skeletal muscle expression with primary expression of the transgene in the heart, a tissue containing primarily cardiac actin isoforms. Developmentally, a transition from embryonic heart to fetal and neonatal skeletal muscle expression was produced by the transgene promoter, a pattern of regulation similar to that of the endogenous alpha-skeletal actin gene. Instances of departure of transgene expression from the endogenous gene implied the existance of higher order muscle gene regulatory mechanisms.

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