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小窝蛋白-1与脂肪酸合酶的脂筏相关群体相互作用。

Caveolin-1 interacts with a lipid raft-associated population of fatty acid synthase.

作者信息

Di Vizio Dolores, Adam Rosalyn M, Kim Jayoung, Kim Robert, Sotgia Federica, Williams Terence, Demichelis Francesca, Solomon Keith R, Loda Massimo, Rubin Mark A, Lisanti Michael P, Freeman Michael R

机构信息

The Urological Diseases Research Center and Department of Surgery, Children's Hospital Boston, Harvard Medical School, Boston, Massachusetts 02115, USA.

出版信息

Cell Cycle. 2008 Jul 15;7(14):2257-67. doi: 10.4161/cc.7.14.6475. Epub 2008 May 12.

Abstract

Fatty Acid Synthase (FASN), a cytoplasmic biosynthetic enzyme, is the major source of long-chain fatty acids, particularly palmitate. Caveolin-1 (Cav-1) is a palmitoylated lipid raft protein that plays a key role in signal transduction and cholesterol transport. Both proteins have been implicated in prostate cancer (PCa) progression, and Cav-1 regulates FASN expression in a mouse model of aggressive PCa. We demonstrate that FASN and Cav-1 are coordinately upregulated in human prostate tumors in a hormone-insensitive manner. Levels of FASN and Cav-1 protein expression discriminated between localized and metastatic cancers, and the two proteins exhibited analogous subcellular locations in a tumor subset. Endogenous FASN and Cav-1 were reciprocally co-immunoprecipitated from human and murine PCa cells, indicating that FASN forms a complex with Cav-1. FASN, a cytoplasmic enzyme, was induced to associate transiently with lipid raft membranes following alterations in signal transduction within the Src, Akt and EGFR pathways, suggesting that co-localization of FASN and Cav-1 is dependent on activation of upstream signaling mediators. A Cav-1 palmitoylation mutant, Cav-1(C133/143/156S), that prevents phosphorylation by Src, did not interact with FASN. When overexpressed in Cav-1-negative PCa cells, Cav-1(C133/143/156S) caused a reduction of both Src and Akt levels, as well as of their active, phosphorylated forms, in comparison with wild type Cav-1. These findings suggest that FASN and Cav-1 physically and functionally interact in PCa cells. They also imply that palmitoylation within this complex is involved in tumor growth and survival.

摘要

脂肪酸合酶(FASN)是一种细胞质生物合成酶,是长链脂肪酸尤其是棕榈酸的主要来源。小窝蛋白-1(Cav-1)是一种棕榈酰化的脂筏蛋白,在信号转导和胆固醇运输中起关键作用。这两种蛋白均与前列腺癌(PCa)进展有关,并且在侵袭性PCa小鼠模型中,Cav-1调节FASN的表达。我们证明,FASN和Cav-1在人前列腺肿瘤中以激素不敏感的方式协同上调。FASN和Cav-1蛋白表达水平可区分局限性癌和转移性癌,并且这两种蛋白在肿瘤亚群中表现出类似的亚细胞定位。内源性FASN和Cav-1可从人及小鼠PCa细胞中相互免疫共沉淀,表明FASN与Cav-1形成复合物。FASN是一种细胞质酶,在Src、Akt和EGFR途径内信号转导改变后,被诱导与脂筏膜短暂结合,提示FASN和Cav-1的共定位依赖于上游信号介质的激活。一种阻止Src磷酸化的Cav-1棕榈酰化突变体Cav-1(C133/143/156S)不与FASN相互作用。当在Cav-1阴性的PCa细胞中过表达时,与野生型Cav-1相比,Cav-1(C133/143/156S)导致Src和Akt水平及其活性磷酸化形式均降低。这些发现表明,FASN和Cav-1在PCa细胞中存在物理和功能上的相互作用。它们还暗示该复合物中的棕榈酰化参与肿瘤生长和存活。

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