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Conceptual and Methodological Considerations on mRNA and Proteins as Intercellular and Long-Distance Signals

机译:mRNA和蛋白质为细胞间和长距离信号的概念性和方法论考虑因素

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High-throughput studies identified approximately one-fifth of Arabidopsis protein-encoding transcripts to be graft transmissible and to move over long distances in the phloem. In roots, one-fifth of transcription factors were annotated as non-cell autonomous, moving between cells. Is this massive transport a way of interorgan and cell-cell communication or does it serve different purposes? On the tissue level, many microRNAs (miRNAs) and all small interfering RNAs (siRNAs) act non-cell autonomously. Why are these RNAs and proteins not just expressed in cells where they exert their function? Short- and long-distance transport of these macromolecules raises the question of whether all mobile mRNAs and transcription factors could be defined as signaling molecules. Since the answer is not clear yet, we will discuss in this review conceptual approaches to this phenomenon using a single mobile signaling macromolecule, FLOWERING LOCUS T, which has been characterized extensively. We conclude that careful individual studies of mobile macromolecules are necessary to uncover their biological function and the observed massive mobility. To stimulate such studies, we provide a review summarizing the resourceful wealth of experimental approaches to this intriguing question and discuss methodological scopes and limits.
机译:高通量研究鉴定了拟南芥蛋白编码的转录物的大约五分之一,以接枝可传递,并在韧皮柱中移动长距离。在根中,五分之一的转录因子被注释为非细胞自主,在细胞之间移动。这种大规模的运输方式是一种室内同步和细胞 - 细胞通信的方式,还是它提供不同的目的?在组织水平上,许多MicroRNA(miRNA)和所有小干扰RNA(siRNA)自主行动非细胞。为什么这些RNA和蛋白质不仅在他们发挥作用的细胞中表达?这些大分子的短路和长距离传输提出了是否可以定义为信号分子的所有移动MRNA和转录因子的问题。由于答案尚未清楚,我们将在本综述中讨论这种现象的概念方法,使用单个移动信号传导型大分子,开花基因座T,它们已经广泛表征。我们得出结论,需要对移动大分子进行仔细的个体研究,以发现其生物学功能和观察到的大规模移动性。为了刺激这些研究,我们提供了综述对这种有趣问题的高度实验方法的综述,并讨论了方法论范围和限制。

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