Prasad Chandra Prakash, Södergren Katja, Andersson Tommy
Cell and Experimental Pathology, Department of Translational Medicine, Lund University, Clinical Research Centre, Skåne University Hospital, SE-20502 Malmö, Sweden.
Oncotarget. 2017 Apr 20;8(42):71471-71488. doi: 10.18632/oncotarget.17277. eCollection 2017 Sep 22.
Here we investigated the impact of WNT5A signaling on aerobic glycolysis and evaluated its effects on breast cancer cell migration/invasion. WNT5A signaling reduced migration and lactate production and caused selective down-regulation of the glycolytic enzyme phosphofructokinase platelet-type (PFKP). These events occurred in parallel with a WNT5A-induced inhibition of β-catenin signaling. Support for essential involvement of β-catenin and PFKP in lactate production and migration/invasion was obtained by siRNA knockdown of their expression. To also explore the effect of non-tumor cell-derived lactate, we added exogenous lactate to the cells and noted an increase in migration that was significantly impaired by recombinant WNT5A in parallel with a down-regulation of the lactate transporter monocarboxylate transporter 1 (MCT1). Interestingly enough, the drug-candidate Foxy5 (WNT5A-mimic hexapeptide) also inhibited breast cancer cell migration in the presence of exogenous lactate, suggesting a therapeutic potential for Foxy5 in managing breast tumors with high glycolytic activity. Overall, we demonstrated that WNT5A signaling (via a β-catenin-PFKP axis) reduces lactate production and lowers the expression of MCT1, a carrier mediating the uptake of lactate from the tumor microenvironment. These effects of WNT5A are essential for its ability to impair breast cancer migration/invasion even in an environment with elevated lactate levels.
在此,我们研究了WNT5A信号传导对有氧糖酵解的影响,并评估了其对乳腺癌细胞迁移/侵袭的作用。WNT5A信号传导减少了迁移和乳酸生成,并导致糖酵解酶血小板型磷酸果糖激酶(PFKP)的选择性下调。这些事件与WNT5A诱导的β-连环蛋白信号传导抑制同时发生。通过小干扰RNA(siRNA)敲低β-连环蛋白和PFKP的表达,证实了它们在乳酸生成以及迁移/侵袭过程中的重要作用。为了探究非肿瘤细胞来源的乳酸的影响,我们向细胞中添加外源性乳酸,发现迁移增加,但重组WNT5A显著削弱了这种增加,同时乳酸转运体单羧酸转运体1(MCT1)的表达下调。有趣的是,候选药物Foxy5(WNT5A模拟六肽)在外源性乳酸存在的情况下也抑制了乳腺癌细胞的迁移,这表明Foxy5在治疗具有高糖酵解活性的乳腺肿瘤方面具有潜在的治疗价值。总体而言,我们证明WNT5A信号传导(通过β-连环蛋白-PFKP轴)减少了乳酸生成,并降低了MCT1的表达,MCT1是一种介导从肿瘤微环境摄取乳酸的载体。即使在乳酸水平升高的环境中,WNT5A的这些作用对于其损害乳腺癌迁移/侵袭的能力也是至关重要的。