Institute of Cancer Research, Department of Medicine I, Medical University of Vienna, Austria.
Research Institute of Molecular Pathology, Vienna, Austria.
FEBS J. 2017 Oct;284(20):3484-3505. doi: 10.1111/febs.14207. Epub 2017 Sep 14.
The interleukin-like epithelial-to-mesenchymal transition (EMT) inducer (ILEI)/FAM3C is a member of the highly homologous FAM3 family and is essential for EMT and metastasis formation. It is upregulated in several cancers, and its altered subcellular localization strongly correlates with poor survival. However, the mechanism of ILEI action, including the structural requirements for ILEI activity, remains elusive. Here, we show that ILEI formed both monomers and covalent dimers in cancer cell lines and in tumors. Using mutational analysis and pulse-chase experiments, we found that the four ILEI cysteines, conserved throughout the FAM3 family and involved in disulfide bond formation were essential for extracellular ILEI accumulation in cultured cells. Modification of a fifth cysteine (C185), unique for ILEI, did not alter protein secretion, but completely inhibited ILEI dimerization. Wild-type ILEI monomers, but not C185A mutants, could be converted into covalent dimers extracellularly upon overexpression by intramolecular-to-intermolecular disulfide bond isomerization. Incubation of purified ILEI with cell culture medium showed that dimerization was triggered by bovine serum in a dose- and time-dependent manner. Purified ILEI dimers induced EMT and trans-well invasion of cancer cells in vitro. In contrast, ILEI monomers and the dimerization-defective C185A mutant affected only cell motility as detected by scratch assays and cell tracking via time-lapse microscopy. Importantly, tumor cells overexpressing wild-type ILEI caused large tumors and lung metastases in nude mice, while cells overexpressing the dimerization-defective C185A mutant behaved similar to control cells. These data show that covalent ILEI self-assembly is essential for EMT induction, elevated tumor growth, and metastasis.
白细胞介素样上皮-间充质转化(EMT)诱导物(ILEI)/FAM3C 是高度同源的 FAM3 家族的成员,是 EMT 和转移形成所必需的。它在几种癌症中上调,其改变的亚细胞定位与不良预后密切相关。然而,ILEI 的作用机制,包括 ILEI 活性的结构要求,仍然难以捉摸。在这里,我们表明 ILEI 在癌细胞系和肿瘤中形成单体和共价二聚体。通过突变分析和脉冲追踪实验,我们发现 ILEI 中的四个半胱氨酸(整个 FAM3 家族中保守且参与二硫键形成)对于细胞培养中细胞外 ILEI 的积累是必不可少的。对第五个半胱氨酸(C185)的修饰(ILEI 所特有)不会改变蛋白质分泌,但完全抑制 ILEI 二聚化。野生型 ILEI 单体,但不是 C185A 突变体,在过表达时可以通过分子内到分子间二硫键异构化转化为细胞外的共价二聚体。纯化的 ILEI 与细胞培养基孵育表明,二聚化在牛血清存在下以剂量和时间依赖性方式触发。纯化的 ILEI 二聚体在体外诱导 EMT 和癌细胞的 Trans-well 侵袭。相比之下,ILEI 单体和二聚化缺陷的 C185A 突变体仅通过划痕实验和通过延时显微镜的细胞跟踪检测到细胞迁移。重要的是,过表达野生型 ILEI 的肿瘤细胞在裸鼠中引起大肿瘤和肺转移,而过表达二聚化缺陷的 C185A 突变体的细胞行为与对照细胞相似。这些数据表明,ILEI 的共价自组装对于 EMT 诱导、肿瘤生长增加和转移是必不可少的。