内吞和根尖细胞挤压构成基质酶下游的肿瘤抑制机制

J. Armistead, J. Hatzold, Anna van Roye, Evelin Fahle, M. Hammerschmidt
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引用次数: 6

摘要

II型跨膜丝氨酸蛋白酶基质酶1 (ST14)通常被认为是一种致癌基因,但它在抑制癌变中也发挥着未被充分研究的作用。这种双面性在斑马鱼同源基质酶抑制剂Hai1a (Spint1a)的功能丧失突变体的胚胎表皮中很明显。突变胚胎表现为表皮增生,但也表现为顶端细胞挤压,在此过程中,挤压的外层角质形成细胞对下层基底细胞进行内吞样吞噬和夹带,形成肿瘤抑制作用。这些抵消基质酶的作用依赖于EGFR和新发现的中介磷脂酶D (PLD),后者促进mtorc1依赖的细胞增殖和鞘氨醇-1-磷酸(S1P)依赖的内缩和顶端细胞挤压。因此,半形态的hai1a突变体可以自发愈合,而其他致命的hai1a突变体在与PLD抑制剂和S1P共同治疗后可以有效地恢复。总之,我们的数据阐明了体内基质酶双面功能的机制,并揭示了当这种双面机制参与时,组合癌症治疗的潜在用途。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Entosis and apical cell extrusion constitute a tumor-suppressive mechanism downstream of Matriptase
The type II transmembrane serine protease Matriptase 1 (ST14) is commonly known as an oncogene, yet it also plays an understudied role in suppressing carcinogenesis. This double face is evident in the embryonic epidermis of zebrafish loss-of-function mutants in the cognate Matriptase inhibitor Hai1a (Spint1a). Mutant embryos display epidermal hyperplasia, but also apical cell extrusions, during which extruding outer keratinocytes carry out an entosis-like engulfment and entrainment of underlying basal cells, constituting a tumor-suppressive effect. These counteracting Matriptase effects depend on EGFR and the newly identified mediator phospholipase D (PLD), which promotes both mTORC1-dependent cell proliferation and sphingosine-1-phosphate (S1P)-dependent entosis and apical cell extrusion. Accordingly, hypomorphic hai1a mutants heal spontaneously, while otherwise lethal hai1a amorphs are efficiently rescued upon cotreatment with PLD inhibitors and S1P. Together, our data elucidate the mechanisms underlying the double face of Matriptase function in vivo and reveal the potential use of combinatorial carcinoma treatments when such double-face mechanisms are involved.
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