首页> 美国卫生研究院文献>Diabetes >Portal Vein Glucose Entry Triggers a Coordinated Cellular Response That Potentiates Hepatic Glucose Uptake and Storage in Normal but Not High-Fat/High-Fructose–Fed Dogs
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Portal Vein Glucose Entry Triggers a Coordinated Cellular Response That Potentiates Hepatic Glucose Uptake and Storage in Normal but Not High-Fat/High-Fructose–Fed Dogs

机译:门静脉葡萄糖进入触发了协调的细胞反应可增强正常但非高脂/高果糖喂养的狗的肝葡萄糖摄取和储存

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摘要

The cellular events mediating the pleiotropic actions of portal vein glucose (PoG) delivery on hepatic glucose disposition have not been clearly defined. Likewise, the molecular defects associated with postprandial hyperglycemia and impaired hepatic glucose uptake (HGU) following consumption of a high-fat, high-fructose diet (HFFD) are unknown. Our goal was to identify hepatocellular changes elicited by hyperinsulinemia, hyperglycemia, and PoG signaling in normal chow-fed (CTR) and HFFD-fed dogs. In CTR dogs, we demonstrated that PoG infusion in the presence of hyperinsulinemia and hyperglycemia triggered an increase in the activity of hepatic glucokinase (GK) and glycogen synthase (GS), which occurred in association with further augmentation in HGU and glycogen synthesis (GSYN) in vivo. In contrast, 4 weeks of HFFD feeding markedly reduced GK protein content and impaired the activation of GS in association with diminished HGU and GSYN in vivo. Furthermore, the enzymatic changes associated with PoG sensing in chow-fed animals were abolished in HFFD-fed animals, consistent with loss of the stimulatory effects of PoG delivery. These data reveal new insight into the molecular physiology of the portal glucose signaling mechanism under normal conditions and to the pathophysiology of aberrant postprandial hepatic glucose disposition evident under a diet-induced glucose-intolerant condition.
机译:尚未明确定义介导门静脉葡萄糖(PoG)递送对肝葡萄糖沉积的多效作用的细胞事件。同样,食用高脂,高果糖饮食(HFFD)后与餐后高血糖和肝葡萄糖摄取受损(HGU)相关的分子缺陷也是未知的。我们的目标是确定高脂饮食(CTR)和HFFD喂养的狗的高胰岛素血症,高血糖症和PoG信号传导引起的肝细胞变化。在CTR犬中,我们证明了在高胰岛素血症和高血糖症的情况下输注PoG会触发肝脏葡萄糖激酶(GK)和糖原合酶(GS)活性的增加,这与HGU和糖原合成(GSYN)的进一步增加有关体内。相比之下,HFFD喂养4周可显着降低GK蛋白含量,并与体内HGU和GSYN降低有关,从而损害GS的活化。此外,在HFFD喂养的动物中消除了与在cho饲动物中的PoG感测相关的酶促变化,这与PoG递送的刺激作用的丧失相一致。这些数据揭示了对正常条件下门葡萄糖信号传导机制的分子生理学以及在饮食诱导的葡萄糖不耐受条件下明显的餐后肝葡萄糖异常处置的病理生理学的新见解。

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