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Detection of a novel sense-antisense RNA-hybrid structure by RACE experiments on endogenous troponin I antisense RNA.

机译:通过内源性肌钙蛋白I反义RNA的RACE实验检测新型的正义-反义RNA杂合结构。

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摘要

Conformational changes in the troponin/tropomyosin complex significantly alter the mechanical properties of cardiac muscle. Phosphorylation of cardiac troponin I, part of the troponin/tropomyosin complex, reduces calcium affinity, which leads to increased relaxation of cardiac muscle. Because cardiac troponin I plays a central role in tuning the heart to different work demands, detailed knowledge of troponin I protein regulation is required. Our group previously detected naturally occurring antisense RNA for troponin I in human and rat hearts, and here, attempt to unravel the structure of rat cardiac troponin I antisense RNA. We performed rapid amplification of cDNA ends (RACE) experiments and discovered antisense sequences identical to a copy of the sense mRNA, which led us to conclude that the antisense RNA must be transcribed from troponin I mRNA in the cytoplasm. Moreover, we isolated RNA structures comprising sense and antisense sequences in one continuous molecule. As we found no homolog structures described in the literature, we called this hybrid RNA. concluded that hybrid RNA is a consequence of a tight interaction between sense and antisense troponin I RNA in vivo, which we discuss in the article.
机译:肌钙蛋白/原肌球蛋白复合物的构象变化显着改变了心肌的机械性能。肌钙蛋白I(肌钙蛋白/原肌球蛋白复合物的一部分)的磷酸化降低了钙的亲和力,从而导致心肌的松弛增加。由于心脏肌钙蛋白I在调节心脏以适应不同的工作需求方面起着核心作用,因此需要对肌钙蛋白I蛋白调节的详细了解。我们的研究小组先前在人和大鼠的心脏中检测到了肌钙蛋白I的天然反义RNA,并在这里试图揭示大鼠心脏肌钙蛋白I反义RNA的结构。我们进行了cDNA末端(RACE)实验的快速扩增,发现与正义mRNA拷贝相同的反义序列,这使我们得出结论,反义RNA必须从细胞质中的肌钙蛋白I mRNA转录。此外,我们分离了在一个连续分子中包含有义和反义序列的RNA结构。由于我们在文献中未发现同源结构,因此我们将其称为杂合RNA。得出结论,杂合RNA是有义和反义肌钙蛋白I RNA在体内紧密相互作用的结果,我们将在本文中进行讨论。

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