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Neutral lipid trafficking regulates alveolar type II cell surfactant phospholipid and surfactant protein expression.

机译:中性脂质运输调节肺泡II型细胞表面活性剂磷脂和表面活性剂蛋白的表达。

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摘要

Adipocyte differentiation-related protein (ADRP) is a critically important protein that mediates lipid uptake, and is highly expressed in lung lipofibroblasts (LIFs). Triacylglycerol secreted from the pulmonary circulation and stored in lipid storage droplets is a robust hormonal-, growth factor-, and stretch-regulated precursor for surfactant phospholipid synthesis by alveolar type II epithelial (ATII) cells. A549 lung epithelial cells rapidly take up green fluorescent protein (GFP)-ADRP fusion protein-associated lipid droplets (LDs) in a dose-dependent manner. The LDs initially localize to the perinuclear region of the cell, followed by localization in the cytoplasm. Uptake of ADRP-LDs causes a time- and dose-dependent increase in surfactant protein-B (SP-B) expression. This mechanism can be inhibited by either actinomycin D or cycloheximide, indicating that ADRP-LDs induce newly synthesized SP-B. ADRP-LDs concomitantly stimulate saturated phosphatidylcholine (satPC) synthesis by A549 cells, which is inhibited by ADRP antibody, indicating that this is a receptor-mediated mechanism. Intravenous administration of GFP-ADRP LDs to adult rats results in dose-dependent increases in lung ADRP and SP-B expression. These data indicate that lipofibroblast-derived ADRP coordinates ATII cells' synthesis of the surfactant phospholipid-protein complex by stimulating both satPC and SP-B. The authors propose, therefore, that ADRP is the physiologic determinant for the elusive coordinated, stoichiometric synthesis of surfactant phospholipid and protein by pulmonary ATII cells.
机译:脂肪细胞分化相关蛋白(ADRP)是介导脂质摄取的至关重要的蛋白,在肺脂肪成纤维细胞(LIFs)中高度表达。从肺循环分泌并储存在脂质储存液滴中的三酰基甘油是由II型肺泡上皮细胞(ATII)合成表面活性剂磷脂的强大的激素,生长因子和拉伸调节前体。 A549肺上皮细胞以剂量依赖性方式迅速吸收绿色荧光蛋白(GFP)-ADRP融合蛋白相关的脂质滴(LDs)。 LD最初定位在细胞的核周区域,然后定位在细胞质中。 ADRP-LDs的摄取导致表面活性剂蛋白B(SP-B)表达随时间和剂量的增加。该机制可以被放线菌素D或环己酰亚胺抑制,表明ADRP-LDs诱导了新合成的SP-B。 ADRP-LDs伴随刺激A549细胞的饱和磷脂酰胆碱(satPC)合成,这被ADRP抗体抑制,表明这是受体介导的机制。对成年大鼠静脉内施用GFP-ADRP LD会导致肺ADRP和SP-B表达呈剂量依赖性增加。这些数据表明,衍生自成纤维细胞的ADRP通过刺激satPC和SP-B来协调ATII细胞表面活性剂磷脂-蛋白质复合物的合成。因此,作者提出,ADRP是肺ATII细胞难以捉摸的化学计量合成表面活性剂磷脂和蛋白质的生理决定因素。

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