Arsenic Alters Exosome Quantity and Cargo to Mediate Stem Cell Recruitment Into a Cancer Stem Cell-Like Phenotype

被引:36
作者
Ngalame, Ntube N. O. [1 ]
Luz, Anthony L. [1 ]
Makia, Ngome [1 ]
Tokar, Erik J. [1 ]
机构
[1] Natl Inst Environm Hlth Sci, Div Natl Toxicol Program, Natl Toxicol Program Lab, Stem Cell Toxicol Grp, 111 TW Alexander Dr,Bldg 101,Room E-105, Res Triangle Pk, NC 27709 USA
关键词
arsenic; cancer; exosomes; prostate; stem cells; INDUCED MALIGNANT-TRANSFORMATION; EPITHELIAL-CELLS; E-CADHERIN; ONCOGENE; MICRORNA; EXPOSURE; PROMOTES; MICROVESICLES; PROLIFERATION; ANGIOGENESIS;
D O I
10.1093/toxsci/kfy176
中图分类号
R99 [毒物学(毒理学)];
学科分类号
100405 ;
摘要
Inorganic arsenic is a human carcinogen that can target the prostate. Accumulating evidence suggests arsenic can disrupt stem cell (SC) dynamics during the carcinogenic process. Previous work demonstrated arsenic-transformed prostate epithelial (CAsE-PE) cells can recruit prostate SCs into rapidly acquiring a cancer SC (CSC) phenotype via the secretion of soluble factors. Exosomes are small, membrane-derived vesicles that contain lipids, RNA, and proteins, and actively contribute to cancer initiation and progression when taken up by target cells. Here we hypothesized that CAsE-PE cells are recruiting SCs to a CSC-like phenotype via exosomal signaling. CAsE-PE cells secreted 700% more exosomes than parental RWPE-1 cells. CAsE-PE exosomes were enriched with oncogenic factors, including oncogenes (KRAS, NRAS, VEFGA, MYB, and EGFR), inflammation-related (cyclooxygenase-2, interleukin 1B (IL1B), IL6, transforming growth factor-beta, and tumor necrosis factor-A), and apoptosis-related (CASP7, CASP9, and BCL2) transcripts, and oncogenesis-associated microRNAs. When compared with SCs cultured in exosome-depleted conditioned medium (CM), SCs cultured in CM containing CAsE-PE-derived exosomes showed increased (198%) matrix metalloproteinase activity and underwent an epithelial-to-mesenchymal transition in morphology, suggesting an exosome-mediated transformation. KRAS plays an important role in arsenic carcinogenesis. Although KRAS transcript (>24 000%) and protein (866%) levels were elevated in CAsE-PE exosomes, knock-down of KRAS in these cells only partially mitigated the CSC-like phenotype in cocultured SCs. Collectively, these results suggest arsenic impacts both exosomal quantity and cargo. Exosomal KRAS is only minimally involved in this recruitment, and additional factors (eg, cancer-associated miRNAs) likely also play a role. This work furthers our mechanistic understanding of how arsenic disrupts SC dynamics and influences the tumor microenvironment during carcinogenesis.
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页码:40 / 49
页数:10
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