Department of Cancer Biology, Mayo Clinic, Jacksonville, Florida.
Mayo Clinic Graduate School of Biomedical Sciences, Jacksonville, Florida.
Cancer Res Commun. 2023 Apr 17;3(4):607-620. doi: 10.1158/2767-9764.CRC-22-0425. eCollection 2023 Apr.
Cancer stem cells (CSC) within non-small cell lung carcinoma (NSCLC) tumors drive NSCLC progression, metastasis, relapse, and intrinsic chemoresistance. Understanding the mechanisms that support the malignant phenotypes of NSCLC CSCs may provide insights for improved NSCLC therapeutic interventions. Here, we report that expression of RAB27B, a small GTPase, is significantly upregulated in NSCLC CSCs when compared with bulk cancer cells (BCC). Short hairpin RNA-mediated knockdown of RAB27B leads to a loss of stem cell marker gene expression and reduced NSCLC spheroid growth, clonal expansion, transformed growth, invasion, and tumorigenicity. We find that NSCLC CSCs secrete significantly more extracellular vesicles (EV) than BCCs, and that this is RAB27B-dependent. Furthermore, CSC-derived EVs, but not BCC-derived EVs, induce spheroid growth, clonal expansion, and invasion in BCCs. Finally, RAB27B is required for CSC-derived EV-induced stemness in BCCs. Taken together, our results indicate that RAB27B is required for maintenance of a highly tumorigenic, cancer-initiating, invasive stem-like cell population in NSCLC and RAB27B is involved in propagating EV-mediated communication from NSCLC CSCs to BCCs. Our findings further suggest that inhibition of RAB27B-dependent EV secretion may be a potential therapeutic strategy for NSCLC.
Expression of RAB27B in CSCs leads to elevated levels of EVs that mediate communication between CSCs and BCCs that maintains a stem-like phenotype in NSCLC cells.
非小细胞肺癌(NSCLC)肿瘤中的癌症干细胞(CSC)驱动 NSCLC 的进展、转移、复发和内在的化疗耐药性。了解支持 NSCLC CSC 恶性表型的机制可能为改善 NSCLC 治疗干预提供思路。在这里,我们报告说,小 GTPase RAB27B 的表达在 NSCLC CSC 中与大量癌细胞(BCC)相比显著上调。短发夹 RNA 介导的 RAB27B 敲低导致干细胞标记基因表达的丧失和 NSCLC 球体生长、克隆扩展、转化生长、侵袭和致瘤性降低。我们发现 NSCLC CSC 分泌的细胞外囊泡(EV)明显多于 BCC,并且这是 RAB27B 依赖性的。此外,CSC 衍生的 EV,但不是 BCC 衍生的 EV,可诱导 BCC 中的球体生长、克隆扩展和侵袭。最后,CSC 衍生的 EV 诱导 BCC 中的干细胞特性需要 RAB27B。总之,我们的结果表明 RAB27B 是维持 NSCLC 中高度致瘤性、起始癌症、侵袭性干细胞样细胞群所必需的,并且 RAB27B 参与了从 NSCLC CSC 到 BCC 的 EV 介导的通讯的传播。我们的发现进一步表明,抑制 RAB27B 依赖性 EV 分泌可能是 NSCLC 的一种潜在治疗策略。
CSC 中 RAB27B 的表达导致 EV 水平升高,这些 EV 介导 CSC 和 BCC 之间的通讯,维持 NSCLC 细胞中的干细胞样表型。