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Overexpression of full-length cholesteryl ester transfer protein in SW872 cells reduces lipid accumulation

机译:全长胆固醇酯转移蛋白在SW872细胞中的过表达减少了脂质的积累

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摘要

Cells produce two cholesteryl ester transfer protein (CETP) isoforms, full-length and a shorter variant produced by alternative splicing. Blocking synthesis of both isoforms disrupts lipid metabolism and storage. To further define the role of CETP in cellular lipid metabolism, we stably overexpressed full-length CETP in SW872 cells. These CETP+ cells had several-fold higher intracellular CETP and accumulated 50% less TG due to a 26% decrease in TG synthesis and 2.5-fold higher TG turnover rate. Reduced TG synthesis was due to decreased fatty acid uptake and impaired conversion of diglyceride to TG even though diacylglycerol acyltransferase activity was normal. Sterol-regulatory element binding protein 1 mRNA levels were normal, and although PPARγ expression was reduced, the expression of several of its target genes including adipocyte triglyceride lipase, FASN, and APOE was normal. CETP+ cells contained smaller lipid droplets, consistent with their higher levels of perilipin protein family (PLIN) 3 compared with PLIN1 and PLIN2. Intracellular CETP was mostly associated with the endoplasmic reticulum, although CETP near lipid droplets poorly colocalized with this membrane. A small pool of CETP resided in the cytoplasm, and a subfraction coisolated with lipid droplets. These data show that overexpression of full-length CETP disrupts lipid homeostasis resulting in the formation of smaller, more metabolically active lipid droplets.
机译:细胞产生两种胆固醇酯转移蛋白(CETP)同工型,它们是全长的,是通过交替剪接产生的较短的变体。阻止两种同工型的合成会破坏脂质的代谢和储存。为了进一步定义CETP在细胞脂质代谢中的作用,我们在SW872细胞中稳定地全长表达了CETP。这些CETP + 细胞的细胞内CETP升高了几倍,并且由于TG合成减少了26%,TG转换率提高了2.5倍,因此TG减少了50%。尽管二酰基甘油酰基转移酶活性正常,但TG合成减少是由于脂肪酸摄入减少和甘油二酯向TG的转化受阻。固醇调节元件结合蛋白1 mRNA水平正常,尽管PPARγ表达降低,但其几个靶基因的表达仍正常,包括脂肪细胞甘油三脂脂肪酶,FASN和APOE。与PLIN1和PLIN2相比,CETP + 细胞包含的脂质滴较小,与其脂蛋白家族(PLIN)3的水平较高相符。细胞内CETP主要与内质网有关,尽管脂滴附近的CETP很难与该膜共定位。 CETP的一小部分驻留在细胞质中,亚组分与脂滴共隔离。这些数据表明全长CETP的过表达会破坏脂质体内平衡,从而导致形成较小的,更具代谢活性的脂质小滴。

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