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Regulated lysosomal exocytosis mediates cancer progression

机译:调节的溶酶体胞吐作用介导癌症进展

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摘要

Understanding how tumor cells transition to an invasive and drug-resistant phenotype is central to cancer biology, but the mechanisms underlying this transition remain unclear. We show that sarcomas gain these malignant traits by inducing lysosomal exocytosis, a ubiquitous physiological process. During lysosomal exocytosis, the movement of exocytic lysosomes along the cytoskeleton and their docking at the plasma membrane involve LAMP1, a sialylated membrane glycoprotein and target of the sialidase NEU1. Cleavage of LAMP1 sialic acids by NEU1 limits the extent of lysosomal exocytosis. We found that by down-regulation of NEU1 and accumulation of oversialylated LAMP1, tumor cells exacerbate lysosomal exocytosis of soluble hydrolases and exosomes. This facilitates matrix invasion and propagation of invasive signals, and purging of lysosomotropic chemotherapeutics. In Arf−⁄− mice, Neu1 haploinsufficiency fostered the development of invasive, pleomorphic sarcomas, expressing epithelial and mesenchymal markers, and lysosomal exocytosis effectors, LAMP1 and Myosin-11. These features are analogous to those of metastatic, pleomorphic human sarcomas, where low NEU1 levels correlate with high expression of lysosomal exocytosis markers. In a therapeutic proof of principle, we demonstrate that inhibiting lysosomal exocytosis reversed invasiveness and chemoresistance in aggressive sarcoma cells. Thus, we reveal that this unconventional, lysosome-regulated pathway plays a primary role in tumor progression and chemoresistance.
机译:了解肿瘤细胞如何转变为侵袭性和耐药性表型是癌症生物学的核心,但目前尚不清楚这种转变的潜在机制。我们显示肉瘤通过诱导溶酶体胞吐作用(一种普遍存在的生理过程)获得这些恶性特征。在溶酶体胞吐过程中,胞外溶酶体沿细胞骨架的运动及其在质膜上的对接涉及唾液酸化膜糖蛋白LAMP1和唾液酸酶NEU1的靶标。 NEU1切割LAMP1唾液酸会限制溶酶体胞吐作用的程度。我们发现,通过NEU1的下调和过度唾液酸化的LAMP1的积累,肿瘤细胞加剧了可溶性水解酶和外泌体的溶酶体胞吐作用。这有助于基质侵入和侵入信号的传播,以及溶同溶性化学疗法的清除。在Arf -⁄-小鼠中,Neu1单倍剂量不足促进了侵袭性,多形性肉瘤的发展,表达了上皮和间充质标记物以及溶酶体胞吐效应因子LAMP1和Myosin-11。这些特征类似于转移性多形性人肉瘤,其中低NEU1水平与溶酶体胞吐标志物的高表达相关。在原理的治疗证据中,我们证明了抑制溶酶体胞吐作用可逆转侵袭性肉瘤细胞的侵袭性和化学抗性。因此,我们揭示了这种非常规的溶酶体调节途径在肿瘤进展和化学抗性中起主要作用。

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