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Differential expression of sirtuin 2 and adipocyte maturation restriction: an adaptation process during hypoxia in fish

机译:sirtuin 2的差异表达和脂肪细胞成熟的限制:鱼类缺氧期间的适应过程

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Sirtuins have received widespread attention due to their diverse physiological role in metabolism. Among sirtuins, SIRT2 is more abundant in adipocytes and exerts effects on adipocyte differentiation, a process which involves conversion of preadipocytes to mature adipocytes orchestrated by adipokines and adipogenic transcription factors. Grey mullet (Mugil cephalus) was chosen as a study organism due to its excellent service as a biomonitor. Adipocytes isolated from natural field conditions were termed as field-hypoxic (Ennore) and -normoxic (Kovalam) based on dissolved oxygen (DO) level in the estuary. A previous study portrayed the hypoxic instance of Ennore estuary (low DO) and grey mullet [HIF1α in adipocytes, brain endothelial cell (EC) and hepatocytes] inhabiting this estuary (?Padmini et al., 2016a,?b;?Padmini and Tharani, 2015). In this context, fish adipocytes of both conditions were subjected to?in vitro?hypoxia for 1?h (in the pre/trigassed incubator with the supply of 1% O2; 94% N2; 5% CO2) and were analysed for the expression of adipokines, adipogenic transcription factors and anti-adipogenic markers in fish adipocytes. Elevation of asymmetric dimethylarginine (ADMA), TNFα and leptin along with decreased adiponectin, adipogenic transcription factors and altering sirtuins were observed in test adipocytes and in control adipocytes on?in vitro?hypoxia. This suggests that adipocytes may follow internal caloric restriction as portrayed from cytomorphological/ultrastructural analysis, limiting adipocyte maturation process, one of the adaptive mechanisms triggered by adipocyte of fish surviving in Ennore estuary. Prolonged exposure to hypoxia (test on?in vitro?hypoxia for 1?h) showed a drastic alteration in these components leading to both structural and biological fluctuation when compared to limited hypoxic condition (field-hypoxic and control on?in vitro?hypoxia). Our study concludes that hypoxia may serve as the chief molecular cue in eliciting adipocyte maturation restriction though metabolic reprogramming and it also shows the significance of adipocyte maturation restriction in imparting survival mechanism.
机译:Sirtuins由于其在新陈代谢中的多种生理作用而受到广泛关注。在sirtuins中,SIRT2在脂肪细胞中含量更高,并对脂肪细胞分化产生影响,该过程涉及前脂肪细胞转化为由脂肪因子和脂肪形成转录因子精心策划的成熟脂肪细胞。灰鱼(Mugil cephalus)因其作为生物监测器的卓越服务而被选为研究生物。根据河口中的溶解氧(DO)水平,从自然田间条件中分离出的脂肪细胞称为低氧田野(Ennore)和低氧田野(Kovalam)。先前的研究描绘了栖息在该河口的Ennore河口(低DO)和灰鱼[HIF1α]的低氧情况(Padmini等人,2016a,?b;?Padmini和Tharani ,2015)。在这种情况下,将两种条件下的鱼脂肪细胞进行体外低氧1?h(在预/磨过的培养箱中,供氧为1%; N2为94%; CO2为5%),并分析其表达。鱼脂肪细胞中脂肪因子,脂肪形成转录因子和抗脂肪形成标记的变化在体外低氧条件下,在测试脂肪细胞和对照脂肪细胞中观察到不对称二甲基精氨酸(ADMA),TNFα和瘦素的升高,以及脂联素,脂肪形成转录因子和沉默调节蛋白的减少。这表明,从细胞形态学/超微结构分析可以看出,脂肪细胞可能会受到内部热量的限制,从而限制了脂肪细胞的成熟过程,这是由在Ennore河口存活的鱼类的脂肪细胞触发的适应性机制之一。与有限的低氧条件(现场低氧和体外低氧控制)相比,长时间缺氧(体外低氧测试1h)显示这些成分的剧烈变化,导致结构和生物学波动。 。我们的研究得出结论,低氧可能是通过代谢重编程引起脂肪细胞成熟限制的主要分子线索,它也显示了脂肪细胞成熟限制在赋予生存机制方面的重要性。

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