首页> 外文期刊>American Journal of Physiology >Inactivation of Plin4 downregulates Plin5 and reduces cardiac lipid accumulation in mice
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Inactivation of Plin4 downregulates Plin5 and reduces cardiac lipid accumulation in mice

机译:Plin4的失活下调了Plin5并减少了小鼠的心脏脂质蓄积

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Plin4 is a lipid droplet protein (LDP) found predominantly in white adipose tissue (WAT). The Plin4 gene is immediately downstream of the Plin5 gene; the two genes exhibit distinct though overlapping tissue expression patterns. Plin4 is absent in brown adipose tissue (BAT) and liver and expressed at low levels in heart and skeletal muscle, whereas Plin5 is highly expressed in these oxidative tissues but at a low level in WAT. The physiological role of Plin4 remains unclear. We have generated Plin4-/- mice by gene targeting. Loss of Plin4 has no effect on body weight or composition or on adipose mass or development. However, the triacylglycerol (TAG) content in heart, but not other oxidative tissues such as BAT, soleus muscle, and liver, is markedly reduced in Plin4-/- mice. The heart of Plin4-/- mice displays reduced Plin5 mRNA and protein levels (by -38 and 87%, respectively, vs. wild-type) but unchanged mRNA levels of other perilipin family genes (Plin2 and Plin3) or genes involved in glucose and lipid metabolism. Despite reduced cardiac TAG level, both young and aged Plin4-/- mice maintain normal heart function as wild-type mice, as measured by echocardiography. Interestingly, Plin4 deficiency prevents the lipid accumulation in the heart that normally occurs after a prolonged (48-h) fast. It also protects the heart from cardiac steatosis induced by high-fat diet or when Plin4-/- mice are bred into Lep-/- obese background. In conclusion, inactivation of Plin4 downregulates Plin5 and reduces cardiac lipid accumulation in mice.
机译:Plin4是一种脂滴蛋白(LDP),主要存在于白色脂肪组织(WAT)中。 Plin4基因紧靠Plin5基因的下游。这两个基因表现出独特但重叠的组织表达模式。 Plin4在棕色脂肪组织(BAT)和肝脏中不存在,在心脏和骨骼肌中低水平表达,而Plin5在这些氧化性组织中高表达,而在WAT中低表达。 Plin4的生理作用仍不清楚。我们已经通过基因靶向产生了Plin4-/-小鼠。 Plin4的损失对体重或组成或脂肪量或发育没有影响。但是,在Plin4-/-小鼠中,心脏中的三酰基甘油(TAG)含量明显降低,但其他氧化性组织(例如BAT,比目鱼肌和肝脏)中的三酰甘油含量却显着降低。 Plin4-/-小鼠的心脏显示Plin5 mRNA和蛋白水平降低(与野生型相比分别降低了-38和87%),而其他脂蛋白家族基因(Plin2和Plin3)或涉及葡萄糖的基因的mRNA水平未改变和脂质代谢。尽管心脏TAG水平降低,但通过超声心动图测量,年轻和老年Plin4-/-小鼠均保持野生型小鼠正常的心脏功能。有趣的是,Plin4缺乏症阻止了长时间(48小时)禁食后通常在心脏中发生的脂质堆积。它还可以保护心脏免受高脂饮食或将Plin4-/-小鼠饲养到Lep-/-肥胖背景中引起的心脏脂肪变性的影响。总之,Plin4的失活会下调Plin5并减少小鼠心脏脂质的蓄积。

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