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首页> 外文期刊>Cell Reports >Resource iTAG-RNA Isolates Cell-Specific Transcriptional Responses to Environmental Stimuli and Identifies an RNA-Based Endocrine Axis
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Resource iTAG-RNA Isolates Cell-Specific Transcriptional Responses to Environmental Stimuli and Identifies an RNA-Based Endocrine Axis

机译:资源itaG-RNA将细胞特异性转录响应分离为环境刺激,并鉴定基于RNA的内分泌轴

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摘要

Biofluids contain various circulating cell-free RNAs (ccfRNAs). The composition of these ccfRNAs varies?among biofluids. They constitute tantalizing biomarker candidates for several pathologies and have been demonstrated to be mediators of cellular communication. Little is known about their function in physiological and developmental settings, and most works are limited to in?vitro studies. Here, we develop iTAG-RNA, a method for the unbiased tagging of RNA transcripts in mice in?vivo . We use iTAG-RNA to isolate hepatocytes and kidney proximal epithelial cell-specific transcriptional responses to a dietary challenge without interfering with the tissue architecture and to identify multiple hepatocyte-secreted ccfRNAs in plasma. We also identify specific transfer of liver-derived ccfRNAs to adipose tissue and skeletal muscle, where they likely constitute a buffering system to maintain lipid homeostasis under acute high-fat-diet feeding. Our findings directly demonstrate in?vivo transfer of RNAs between tissues and highlight its implications for endocrine signaling and homeostasis.
机译:生物流体含有各种循环的无细胞RNA(CCFRNA)。这些CCFRNA的组合物变化?生物流体中。它们构成诱人的生物标志物候选候选候选物,并已被证明是细胞通信的介质。关于它们在生理和发育环境中的功能几乎不知道,大多数作品仅限于体外研究。在这里,我们开发ITAG-RNA,一种用于小鼠中的RNA转录物的无偏的标记的方法。我们使用Itag-RNA将肝细胞和肾近端上皮细胞特异性转录对膳食攻击分离,而不会干扰组织结构并鉴定血浆中的多个肝细胞分泌的CCFRNA。我们还识别肝脏衍生的CCFRNA的特定转移,以脂肪组织和骨骼肌,在那里它们可能构成缓冲系统,以维持急性高脂饮食饲料下的脂质稳态。我们的研究结果直接展示了组织之间RNA的体内转移,并突出了对内分泌信号和稳态的影响。

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