Borges Beatriz C, Garcia-Galiano David, Rorato Rodrigo, Elias Lucila L K, Elias Carol F
Department of Molecular and Integrative Physiology, University of Michigan, United States; Department of Physiology, School of Medicine of Ribeirao Preto, University of Sao Paulo, Brazil.
Department of Molecular and Integrative Physiology, University of Michigan, United States.
Mol Metab. 2016 Mar 19;5(6):379-391. doi: 10.1016/j.molmet.2016.03.003. eCollection 2016 Jun.
Hypophagia and increased energy expenditure under inflammatory conditions, such as that observed after bacterial lipopolysaccharide (LPS) administration, are associated with leptin secretion. The hypophagic effect of leptin depends in part on the activation of PI3K signaling pathway. However, the role of PI3K in the endotoxemia-induced hypophagia has not been determined.
In an attempt to examine the functional contribution of the PI3K pathway in hypophagia and weight loss induced by LPS (100 ug/Kg, ip), we performed a central pharmacological PI3K inhibition (LY294002). Additionally, to gain mechanistic insights on the role of the catalytic PI3K p110α subunit in leptin responsive cells, mice expressing Cre-recombinase driven by the Lepr promoter (LepR-Cre) were crossed with mice carrying a loxP-modified p110α allele (Pi3kca gene) (LepR(Δp110α)). As studies have suggested that the PI3K p110β subunit has a dominant role over p110α in energy homeostasis, we further crossed LepR-Cre mice with loxP-modified p110α and p110β (Pi3kcb gene) alleles (LepR(Δp110α+β)). In order to verify the requirement of leptin in PI3K effects on food intake, we also used leptin-deficient ob/ob mice.
We found that LPS stimulates PI3K and STAT3 signaling pathways in cells expressing the leptin receptor. Central PI3K inhibition prevented LPS-induced hypophagia and weight loss. Genetic deletion of p110α subunit selectively in LepR cells had no effect on LPS-induced hypophagia and weight loss. However, p110α and p110β double deletion in LepR cells prevented LPS-induced hypophagia and partially reversed the weight loss. Leptin deficiency blunted LPS-induced acute pAKT and pSTAT3 phosphorylation and the acute suppression of food intake.
Our studies show that the PI3K p110β subunit in LepR cells is required for acute endotoxemic hypophagia. The data provide promising approaches for PI3K inhibition in preventing low energy balance and cachectic states during inflammatory challenges.
在诸如细菌脂多糖(LPS)给药后所观察到的炎症条件下,摄食减少和能量消耗增加与瘦素分泌有关。瘦素的摄食减少作用部分取决于PI3K信号通路的激活。然而,PI3K在内毒素血症诱导的摄食减少中的作用尚未确定。
为了研究PI3K通路在LPS(100 μg/Kg,腹腔注射)诱导的摄食减少和体重减轻中的功能作用,我们进行了中枢药理学PI3K抑制(LY294002)。此外,为了深入了解催化性PI3K p110α亚基在瘦素反应性细胞中的作用,将由Lepr启动子驱动表达Cre重组酶的小鼠(LepR-Cre)与携带loxP修饰的p110α等位基因(Pi3kca基因)的小鼠(LepR(Δp110α))杂交。由于研究表明PI3K p110β亚基在能量稳态中对p110α具有主导作用,我们进一步将LepR-Cre小鼠与loxP修饰的p110α和p110β(Pi3kcb基因)等位基因杂交(LepR(Δp110α+β))。为了验证瘦素在PI3K对食物摄入影响中的必要性,我们还使用了瘦素缺乏的ob/ob小鼠。
我们发现LPS刺激表达瘦素受体的细胞中的PI3K和STAT3信号通路。中枢PI3K抑制可防止LPS诱导的摄食减少和体重减轻。在LepR细胞中选择性地基因敲除p110α亚基对LPS诱导的摄食减少和体重减轻没有影响。然而,LepR细胞中p110α和p110β双敲除可防止LPS诱导的摄食减少并部分逆转体重减轻。瘦素缺乏减弱了LPS诱导的急性pAKT和pSTAT3磷酸化以及食物摄入的急性抑制。
我们的研究表明,LepR细胞中的PI3K p110β亚基是急性内毒素血症性摄食减少所必需的。这些数据为PI3K抑制在预防炎症挑战期间的低能量平衡和恶病质状态提供了有前景的方法。