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首页> 外文期刊>Molecular Metabolism >Novel noncoding RNA CircPTK2 regulates lipolysis and adipogenesis in cachexia
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Novel noncoding RNA CircPTK2 regulates lipolysis and adipogenesis in cachexia

机译:新型非致rna QiCPTK2调节恶病症中的脂解和脂肪发生

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Objective Cancer-associated cachexia is a devastating pathological disorder characterized by skeletal muscle wasting and fat storage depletion. Circular RNA, a newly discovered class of noncoding RNAs with important roles in regulating lipid metabolism, has not been fully understood in the pathology of cachexia. We aimed to identify circular RNAs that are upregulated in adipose tissues from cachectic patients and explore their function and mechanism in lipid metabolism. Methods Whole transcriptome RNA sequencing was used to screen for differentially expressed circRNAs. Quantitative reverse transcription PCR was applied to detect the expression level of circPTK2 in adipose tissues. The diagnostic value of circPTK2 was evaluated in adipose tissues from patients with and without cachexia. Then, function experiments in?vitro and in?vivo were performed to evaluate the effects of circPTK2 on lipolysis and adipogenesis. Mechanistically, luciferase reporter assay, RNA immunoprecipitation, and fluorescent in situ hybridization were performed to confirm the interaction between circPTK2 and miR-182-5p in adipocytes. Results We detected 66 differentially expressed circular RNA candidates and proved that circPTK2 was upregulated in adipose tissues from cachectic patients. Then we identified that circPTK2 was closely related to the pathological process of cachexia and could be used as a diagnostic marker. Mechanistically, circPTK2 bound competitively to miR-182-5p and abrogated the suppression on its target gene JAZF1, which finally led to promotion of lipolysis and inhibition of adipogenesis. In?vivo experiments demonstrated that overexpression of circPTK2 inhibited adipogenesis and enhanced lipolysis. Conclusions Our findings reveal the novel role of circPTK2 in promoting lipolysis and reducing adipogenesis via a ceRNA mechanism and provide a potential diagnostic biomarker and therapeutic target for cancer-associated cachexia.
机译:目标癌症相关的恶病症是一种毁灭性的病理疾病,其特征在于骨骼肌浪费和脂肪储存耗尽。圆形RNA,一种新发现的非编码RNA,具有重要作用在调节脂质代谢方面,在恶病症的病理学中尚未完全理解。我们的旨在鉴定循环RNA,该循环RNA来自Cachectic患者的脂肪组织,并探讨了脂质代谢的功能和机制。方法使用整个转录组RNA测序用于筛选差异表达的CircrNA。施用定量逆转录PCR以检测脂肪组织中Qualptk2的表达水平。来自患者的脂肪组织的诊断值来自患者的患者和不含恶病毒患者。然后,进行体外和体内的功能实验,以评估Qualptk2对脂解和脂肪发生的影响。在机械上,进行荧光素酶报告器测定,RNA免疫沉淀和原位杂交的荧光,以证实肝癌中Quptk2和miR-182-5p之间的相互作用。结果我们检测到66个差异表达的圆形RNA候选,并证明了Circptk2在Cachectic患者的脂肪组织中上调。然后,我们确定了Circptk2与恶病毒的病理过程密切相关,可以用作诊断标志物。机械地,Circptk2竞争地竞争地达到miR-182-5p,并废除了其靶基因Jazf1的抑制,最终导致促进脂解和抑制脂肪发生。在α体内实验中表明,Incptk2的过度表达抑制脂肪发生和增强的脂解。结论我们的研究结果揭示了Circptk2在通过Cerna机制促进脂肪解性和减少脂肪生成的新颖作用,并为癌症相关的恶病症提供了潜在的诊断生物标志物和治疗靶标。

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