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首页> 外文期刊>American Journal of Physiology >In vivo analysis of the myosin heavy chain IIB promoter region.
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In vivo analysis of the myosin heavy chain IIB promoter region.

机译:肌球蛋白重链IIB启动子区域的体内分析。

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The myosin heavy chain (MHC) IIB gene is preferentially expressed in fast-twitch muscles of the hindlimb, such as the tibialis anterior (TA). The molecular mechanism(s) for this preferential expression are unknown. The goals of the current study were 1) to determine whether the cloned region of the MHC IIB promoter contains the necessary cis-acting element(s) to drive fiber-type-specific expression of this gene in vivo, 2) to determine which region within the promoter is responsible for fiber-type-specific expression, and 3) to determine whether transcription off of the cloned region of the MHC IIB promoter accurately mimics endogenous gene expression in a muscle undergoing a fiber-type transition. To accomplish these goals, a 2.6-kilobase fragment of the promoter-enhancer region of the MHC IIB gene was cloned upstream of the firefly luciferase reporter gene and coinjected with pRL-cytomegalovirus (CMV) (CMV promoter driving the renilla luciferase reporter) into the TA and the slow soleus muscle. Firefly luciferase activity relative to renilla luciferase activity within the TA was 35-fold greater than within the soleus. Deletional analysis demonstrated that only the proximal 295 base pairs (pGL3IIB0.3) were required to maintain this muscle-fiber-type specificity. Reporter gene expression of pGL3IIB0.3 construct was significantly upregulated twofold in unweighted soleus muscles compared with normal soleus muscles. Thus the region within the proximal 295 base pairs of the MHC IIB gene contains at least one element that can drive fiber-type-specific expression of a reporter gene.
机译:肌球蛋白重链(MHC)IIB基因优先在后肢的快速抽搐肌肉中表达,例如胫骨前(TA)。这种优先表达的分子机制是未知的。当前研究的目标是1)确定MHC IIB启动子的克隆区域是否包含必需的顺式作用元件,以在体内驱动该基因的纤维类型特异性表达; 2)确定哪个区域在启动子中的启动子负责纤维类型的特异性表达,以及3)确定MHC IIB启动子克隆区域的转录是否准确地模拟了经历纤维类型转变的肌肉中的内源基因表达。为了实现这些目标,将MHC IIB基因启动子-增强子区域的2.6千碱基片段克隆到萤火虫萤光素酶报道基因的上游,并与pRL巨细胞病毒(CMV)(CMV启动子驱动海肾萤光素酶报道基因)共同注射。 TA和比目鱼肌缓慢。 TA中萤火虫荧光素酶活性相对于海肾荧光素酶活性比比目鱼肌中大35倍。理想的分析表明,仅需要近端295个碱基对(pGL3IIB0.3)即可维持这种肌肉纤维类型的特异性。与正常比目鱼肌相比,未加重比目鱼肌中pGL3IIB0.3构建体的报告基因基因表达明显上调了两倍。因此,MHC IIB基因的近295个碱基对内的区域包含至少一种可以驱动报告基因的纤维类型特异性表达的元件。

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