Ocłoń Ewa, Gurgul Artur, Szmatoła Tomasz, Jasielczuk Igor, Kucharski Miroslaw, Zubel-Łojek Joanna, Zieba Dorota Anna
Laboratory of Recombinant Proteins Production, University of Agriculture in Krakow, Krakow, Poland.
Department of Basic Sciences, University of Agriculture in Krakow, Krakow, Poland.
Front Mol Neurosci. 2025 Jan 17;17:1518737. doi: 10.3389/fnmol.2024.1518737. eCollection 2024.
The modulation of leptin sensitivity in hypothalamic neurons plays a crucial role in metabolic regulation and the development of obesity. Three distinct approaches, exposure to leptin (LEPA), administration of leptin antagonist (LANTA), and treatment with palmitate (PA), were explored in this study to assess their effects on adult-derived mHypoA-2/12 neurons and the resulting transcriptomic signatures. To this end, 3' mRNA-Seq transcriptome analysis was employed, unexpectedly revealing downregulation of key genes associated with the NOD-like receptor signaling pathway (, , , , , , , and ), the C-type lectin receptor signaling pathway (, , , , , , , and ), the NF kappa B signaling pathway (, , , , , , and ), and the IL 17 signaling pathway (, , , , , , and ). These findings help elucidate the molecular mechanisms through which these factors influence leptin sensitivity and provide insights into the pathways implicated in the development of leptin resistance in hypothalamic neurons. The surprising downregulation of these pathways suggests a complex interplay between leptin signaling and the cellular stress response in hypothalamic neurons. This alteration may reflect adaptive mechanisms in response to prolonged leptin or fatty acid exposure. Understanding these dynamics is essential for elucidating the role of hypothalamic inflammation in the progression of leptin resistance and associated metabolic disorders.
下丘脑神经元中瘦素敏感性的调节在代谢调控和肥胖症发展中起着关键作用。本研究探索了三种不同方法,即暴露于瘦素(LEPA)、给予瘦素拮抗剂(LANTA)和用棕榈酸酯(PA)处理,以评估它们对成年来源的mHypoA - 2/12神经元的影响以及由此产生的转录组特征。为此,采用了3' mRNA - Seq转录组分析,意外地发现与NOD样受体信号通路(……)、C型凝集素受体信号通路(……)、NFκB信号通路(……)和IL - 17信号通路(……)相关的关键基因下调。这些发现有助于阐明这些因素影响瘦素敏感性的分子机制,并为下丘脑神经元中瘦素抵抗发展所涉及的通路提供见解。这些通路出人意料的下调表明瘦素信号与下丘脑神经元中的细胞应激反应之间存在复杂的相互作用。这种改变可能反映了对长期瘦素或脂肪酸暴露的适应性机制。了解这些动态对于阐明下丘脑炎症在瘦素抵抗进展及相关代谢紊乱中的作用至关重要。