Cancer Biology and Genetics Program, Memorial Sloan-Kettering Cancer Center, New York, New York, USA.
Nat Med. 2011 Jun 26;17(7):867-74. doi: 10.1038/nm.2379.
We report that breast cancer cells that infiltrate the lungs support their own metastasis-initiating ability by expressing tenascin C (TNC). We find that the expression of TNC, an extracellular matrix protein of stem cell niches, is associated with the aggressiveness of pulmonary metastasis. Cancer cell-derived TNC promotes the survival and outgrowth of pulmonary micrometastases. TNC enhances the expression of stem cell signaling components, musashi homolog 1 (MSI1) and leucine-rich repeat-containing G protein-coupled receptor 5 (LGR5). MSI1 is a positive regulator of NOTCH signaling, whereas LGR5 is a target gene of the WNT pathway. TNC modulation of stem cell signaling occurs without affecting the expression of transcriptional enforcers of the stem cell phenotype and pluripotency, namely nanog homeobox (NANOG), POU class 5 homeobox 1 (POU5F1), also known as OCT4, and SRY-box 2 (SOX2). TNC protects MSI1-dependent NOTCH signaling from inhibition by signal transducer and activator of transcription 5 (STAT5), and selectively enhances the expression of LGR5 as a WNT target gene. Cancer cell-derived TNC remains essential for metastasis outgrowth until the tumor stroma takes over as a source of TNC. These findings link TNC to pathways that support the fitness of metastasis-initiating breast cancer cells and highlight the relevance of TNC as an extracellular matrix component of the metastatic niche.
我们报告称,浸润肺部的乳腺癌细胞通过表达 tenascin C(TNC)来支持自身的转移起始能力。我们发现,细胞外基质干细胞龛位蛋白 TNC 的表达与肺转移的侵袭性相关。癌细胞衍生的 TNC 促进肺微转移灶的存活和生长。TNC 增强了干细胞信号成分 musashi 同源物 1(MSI1)和富含亮氨酸重复的 G 蛋白偶联受体 5(LGR5)的表达。MSI1 是 NOTCH 信号的正调节剂,而 LGR5 是 WNT 通路的靶基因。TNC 对干细胞信号的调节发生在不影响干细胞表型和多能性的转录执行者表达的情况下,即同源盒基因 NANOG、POU 类 5 同源盒 1(POU5F1),也称为 OCT4,和 SRY 框 2(SOX2)。TNC 保护 MSI1 依赖性 NOTCH 信号免受信号转导和转录激活因子 5(STAT5)的抑制,并选择性地增强 LGR5 作为 WNT 靶基因的表达。癌细胞衍生的 TNC 对于转移生长仍然是必不可少的,直到肿瘤基质接替 TNC 作为其来源。这些发现将 TNC 与支持转移起始性乳腺癌细胞适应性的途径联系起来,并强调了 TNC 作为转移龛位细胞外基质成分的相关性。