首页> 美国卫生研究院文献>Biochemical Journal >Influence of chain length of pyrene fatty acids on their uptake and metabolism by Epstein-Barr-virus-transformed lymphoid cell lines from a patient with multisystemic lipid storage myopathy and from control subjects.
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Influence of chain length of pyrene fatty acids on their uptake and metabolism by Epstein-Barr-virus-transformed lymphoid cell lines from a patient with multisystemic lipid storage myopathy and from control subjects.

机译:Ep脂肪酸链长对多系统脂质贮积性肌病患者和对照对象经爱泼斯坦-巴尔病毒转化的淋巴样细胞系摄取和代谢的影响。

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摘要

The uptake and intracellular metabolism of 4-(1-pyrene)butanoic acid (P4), 10-(1-pyrene)decanoic acid (P10) and 12-(1-pyrene)dodecanoic acid (P12) were investigated in cultured lymphoid cell lines from normal individuals and from a patient with multisystemic lipid storage myopathy (MLSM). The cellular uptake was shown to be dependent on the fatty-acid chain length, but no significant difference in the uptake of pyrene fatty acids was observed between MLSM and control lymphoid cells. After incubation for 1 h the distribution of fluorescent fatty acids taken up by the lymphoid cell lines also differed with the chain length, most of the fluorescence being associated with phospholipid and triacylglycerols. In contrast with P10 and P12, P4 was not incorporated into neutral lipids. When the cells were incubated for 24 h with the pyrene fatty acids, the amount of fluorescent lipids synthesized by the cells was proportional to the fatty acid concentration in the culture medium. After a 24 h incubation in the presence of P10 or P12, at any concentration, the fluorescent triacylglycerol content of MLSM cells was 2-5-fold higher than that of control cells. Concentrations of pyrene fatty acids higher than 40 microM seemed to be more toxic for mutant cells than for control cells. This cytotoxicity was dependent on the fluorescent-fatty-acid chain length (P12 greater than P10 greater than P4). Pulse-chase experiments permitted one to demonstrate the defect in the degradation of endogenously biosynthesized triacylglycerols in MLSM cells (residual activity was around 10-25% of controls on the basis of half-lives and initial rates of P10- or P12-labelled-triacylglycerol catabolism); MLSM lymphoid cells exhibited a mild phenotypic expression of the lipid storage (less severe than that observed in fibroblasts). P4 was not utilized in the synthesis of triacylglycerols, and thus did not accumulate in MLSM cells: this suggests that natural short-chain fatty acids might induce a lesser lipid storage in this disease.
机译:在培养的淋巴样细胞中研究了4-(1-py)丁酸(P4),10-(1-py)癸酸(P10)和12-(1-py)十二烷酸(P12)的摄取和细胞内代谢来自正常个体和患有多系统脂质贮积性肌病(MLSM)的患者的血统。已显示细胞摄取取决于脂肪酸链长度,但是在MLSM和对照淋巴样细胞之间未观察到of脂肪酸摄取的显着差异。温育1小时后,淋巴样细胞系吸收的荧光脂肪酸的分布也随链长而不同,大部分荧光与磷脂和三酰基甘油有关。与P10和P12相反,P4未掺入中性脂质。当将细胞与fatty脂肪酸孵育24小时时,细胞合成的荧光脂质的量与培养基中的脂肪酸浓度成正比。在任何浓度的P10或P12存在下孵育24小时后,MLSM细胞的荧光三酰甘油含量比对照细胞高2-5倍。 mutant脂肪酸的浓度高于40 microM似乎对突变细胞比对对照细胞更具毒性。这种细胞毒性取决于荧光脂肪酸链的长度(P12大于P10大于P4)。脉冲追踪实验允许人们证明MLSM细胞内源性生物合成的三酰基甘油降解的缺陷(根据半衰期和P10或P12标记的三酰基甘油的初始速率,残留活性约为对照的10-25%分解代谢); MLSM淋巴样细胞表现出轻度的脂质存储表型表达(不如在成纤维细胞中观察到的严重)。 P4未用于合成三酰基甘油,因此不会在MLSM细胞中积聚:这表明天然短链脂肪酸可能在这种疾病中诱导较少的脂质存储。

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