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由于鞘磷脂合成酶1表达下调,导致脂筏中鞘磷脂和胆固醇缺乏,从而对烷基溶血磷脂诱导的细胞凋亡产生抗性。

Resistance to alkyl-lysophospholipid-induced apoptosis due to downregulated sphingomyelin synthase 1 expression with consequent sphingomyelin- and cholesterol-deficiency in lipid rafts.

作者信息

Van der Luit Arnold H, Budde Marianne, Zerp Shuraila, Caan Wendy, Klarenbeek Jeffrey B, Verheij Marcel, Van Blitterswijk Wim J

机构信息

Division of Cellular Biochemistry, The Netherlands Cancer Institute/Antoni van Leeuwenhoek Hospital, Plesmanlaan 121, 1066 CX Amsterdam, The Netherlands.

出版信息

Biochem J. 2007 Jan 15;401(2):541-9. doi: 10.1042/BJ20061178.

Abstract

The ALP (alkyl-lysophospholipid) edelfosine (1-O-octadecyl-2-O-methyl-rac-glycero-3-phosphocholine; Et-18-OCH3) induces apoptosis in S49 mouse lymphoma cells. To this end, ALP is internalized by lipid raft-dependent endocytosis and inhibits phosphatidylcholine synthesis. A variant cell-line, S49AR, which is resistant to ALP, was shown previously to be unable to internalize ALP via this lipid raft pathway. The reason for this uptake failure is not understood. In the present study, we show that S49AR cells are unable to synthesize SM (sphingomyelin) due to down-regulated SMS1 (SM synthase 1) expression. In parental S49 cells, resistance to ALP could be mimicked by small interfering RNA-induced SMS1 suppression, resulting in SM deficiency and blockage of raft-dependent internalization of ALP and induction of apoptosis. Similar results were obtained by treatment of the cells with myriocin/ISP-1, an inhibitor of general sphingolipid synthesis, or with U18666A, a cholesterol homoeostasis perturbing agent. U18666A is known to inhibit Niemann-Pick C1 protein-dependent vesicular transport of cholesterol from endosomal compartments to the trans-Golgi network and the plasma membrane. U18666A reduced cholesterol partitioning in detergent-resistant lipid rafts and inhibited SM synthesis in S49 cells, causing ALP resistance similar to that observed in S49AR cells. The results are explained by the strong physical interaction between (newly synthesized) SM and available cholesterol at the Golgi, where they facilitate lipid raft formation. We propose that ALP internalization by lipid-raft-dependent endocytosis represents the retrograde route of a constitutive SMS1- and lipid-raft-dependent membrane vesicular recycling process.

摘要

烷基溶血磷脂(ALP)依地福新(1-O-十八烷基-2-O-甲基-消旋甘油-3-磷酸胆碱;Et-18-OCH3)可诱导S49小鼠淋巴瘤细胞凋亡。为此,ALP通过脂筏依赖性内吞作用进入细胞并抑制磷脂酰胆碱的合成。先前已证明,对ALP具有抗性的变异细胞系S49AR无法通过这种脂筏途径摄取ALP。这种摄取失败的原因尚不清楚。在本研究中,我们发现S49AR细胞由于SMS1(鞘磷脂合酶1)表达下调而无法合成鞘磷脂(SM)。在亲代S49细胞中,小干扰RNA诱导的SMS1抑制可模拟对ALP的抗性,导致SM缺乏,阻断ALP的脂筏依赖性内化并诱导细胞凋亡。用鞘脂合成通用抑制剂myriocin/ISP-1或胆固醇稳态干扰剂U18666A处理细胞也获得了类似结果。已知U18666A可抑制尼曼-皮克C1蛋白依赖性的胆固醇从内体区室向反式高尔基体网络和质膜的囊泡转运。U18666A减少了耐去污剂脂筏中的胆固醇分配,并抑制了S49细胞中的SM合成,导致与S49AR细胞中观察到的类似的ALP抗性。这些结果可以通过(新合成的)SM与高尔基体中可用胆固醇之间的强烈物理相互作用来解释,它们在高尔基体中促进脂筏形成。我们提出,脂筏依赖性内吞作用介导的ALP内化代表了一种组成型SMS1和脂筏依赖性膜囊泡循环过程的逆行途径。

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