The David H. Koch Institute for Integrative Cancer Research, Massachusetts Institute of Technology, Cambridge, MA 02139.
Department of Biology, Massachusetts Institute of Technology, Cambridge, MA 02139.
Proc Natl Acad Sci U S A. 2017 Dec 5;114(49):E10532-E10539. doi: 10.1073/pnas.1711534114. Epub 2017 Nov 20.
Tissue regeneration relies on adult stem cells (SCs) that possess the ability to self-renew and produce differentiating progeny. In an analogous manner, the development of certain carcinomas depends on a small subset of tumor cells, called "tumor-initiating cells" (TICs), with SC-like properties. Mammary SCs (MaSCs) reside in the basal compartment of the mammary epithelium, and their neoplastic counterparts, mammary TICs (MaTICs), are thought to serve as the TICs for the claudin-low subtype of breast cancer. MaSCs and MaTICs both use epithelial-mesenchymal transition (EMT) programs to acquire SC properties, but the mechanism(s) connecting EMT programs to stemness remain unclear. Here we show that this depends on primary cilia, which are nonmotile, cell-surface structures that serve as platforms for receiving cues and enable activation of various signaling pathways. We show that MaSC and MaTIC EMT programs induce primary cilia formation and Hedgehog (Hh) signaling, which has previously been implicated in both MaSC and MaTIC function. Moreover, ablation of these primary cilia is sufficient to repress Hh signaling, the stemness of MaSCs, and the tumor-forming potential of MaTICs. Together, our findings establish primary ciliogenesis and consequent Hh signaling as a key mechanism by which MaSC and MaTIC EMT programs promote stemness and thereby support mammary tissue outgrowth and tumors of basal origin.
组织再生依赖于具有自我更新和产生分化后代能力的成体干细胞 (SCs)。以类似的方式,某些癌的发展取决于一小部分肿瘤细胞,称为“肿瘤起始细胞” (TICs),它们具有 SC 样特性。乳腺干细胞 (MaSCs) 存在于乳腺上皮的基底隔室中,而它们的肿瘤对应物,乳腺 TICs (MaTICs),被认为是 Claudin-low 型乳腺癌的 TICs。MaSCs 和 MaTICs 都使用上皮-间充质转化 (EMT) 程序来获得 SC 特性,但将 EMT 程序与干性联系起来的机制尚不清楚。在这里,我们表明这取决于初级纤毛,初级纤毛是无动力的细胞表面结构,作为接收线索的平台,并能够激活各种信号通路。我们表明 MaSC 和 MaTIC EMT 程序诱导初级纤毛形成和 Hedgehog (Hh) 信号转导,Hh 信号转导先前被认为与 MaSC 和 MaTIC 功能有关。此外,这些初级纤毛的消融足以抑制 Hh 信号转导、MaSCs 的干性和 MaTICs 的肿瘤形成潜力。总之,我们的研究结果确立了初级纤毛发生和随后的 Hh 信号转导作为 MaSC 和 MaTIC EMT 程序促进干性的关键机制,从而支持乳腺组织生长和基底起源的肿瘤。