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Primary cilium suppression by SREBP1c involves distortion of vesicular trafficking by PLA2G3

机译:SREBP1c对纤毛的主要抑制作用涉及PLA2G3对水泡运输的扭曲

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Distortion of primary cilium formation is increasingly recognized as a key event in many human pathologies. One of the underlying mechanisms involves aberrant activation of the lipogenic transcription factor sterol regulatory element–binding protein 1c (SREBP1c), as observed in cancer cells. To gain more insight into the molecular pathways by which SREBP1c suppresses primary ciliogenesis, we searched for overlap between known ciliogenesis regulators and targets of SREBP1. One of the candidate genes that was consistently up-regulated in cellular models of SREBP1c-induced cilium repression was phospholipase A2 group III (PLA2G3), a phospholipase that hydrolyzes the sn-2 position of glycerophospholipids. Use of RNA interference and a chemical inhibitor of PLA2G3 rescued SREBP1c-induced cilium repression. Cilium repression by SREBP1c and PLA2G3 involved alterations in endosomal recycling and vesicular transport toward the cilium, as revealed by aberrant transferrin and Rab11 localization, and was largely mediated by an increase in lysophosphatidylcholine and lysophosphatidylethanolamine levels. Together these findings indicate that aberrant activation of SREBP1c suppresses primary ciliogenesis by PLA2G3-mediated distortion of vesicular trafficking and suggest that PLA2G3 is a novel potential target to normalize ciliogenesis in SREBP1c-overexpressing cells, including cancer cells.
机译:在许多人类病理学中,初级纤毛形成的畸变越来越被认为是关键事件。如在癌细胞中观察到的,潜在的机制之一涉及脂生性转录因子固醇调节元件结合蛋白1c(SREBP1c)的异常激活。为了更深入地了解SREBP1c抑制初级纤毛发生的分子途径,我们寻找了已知纤毛发生调节剂和SREBP1靶标之间的重叠。在SREBP1c诱导的纤毛抑制的细胞模型中一致上调的候选基因之一是磷脂酶A2 III组(PLA2G3),该磷脂酶可水解甘油磷脂的sn-2位置。 RNA干扰和PLA2G3的化学抑制剂的使用挽救了SREBP1c诱导的纤毛抑制。通过异常的转铁蛋白和Rab11本地化表明,SREBP1c和PLA2G3抑制了内质循环和向囊泡的囊泡转运,并主要由溶血磷脂酰胆碱和溶血磷脂酰乙醇胺的水平介导。这些发现共同表明,SREBP1c的异常激活抑制了PLA2G3介导的囊泡运输畸变的主要纤毛发生,并表明PLA2G3是使SREBP1c过表达的细胞(包括癌细胞)中的纤毛发生正常化的新型潜在靶标。

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