Zhao Fei, Malm Scott W, Hinchman Alyssa N, Li Hui, Beeks Connor G, Klimecki Walter T
Department of Pharmacology and Toxicology, College of Pharmacy, University of Arizona, Tucson, Arizona, United States of America.
PLoS One. 2014 Dec 16;9(12):e114549. doi: 10.1371/journal.pone.0114549. eCollection 2014.
Epidemiology studies have established a strong link between lung cancer and arsenic exposure. Currently, the role of disturbed cellular energy metabolism in carcinogenesis is a focus of scientific interest. Hypoxia inducible factor-1 alpha (HIF-1A) is a key regulator of energy metabolism, and it has been found to accumulate during arsenite exposure under oxygen-replete conditions. We modeled arsenic-exposed human pulmonary epithelial cells in vitro with BEAS-2B, a non-malignant lung epithelial cell line. Constant exposure to 1 µM arsenite (As) resulted in the early loss of anchorage-dependent growth, measured by soft agar colony formation, beginning at 6 weeks of exposure. This arsenite exposure resulted in HIF-1A accumulation and increased glycolysis, similar to the physiologic response to hypoxia, but in this case under oxygen-replete conditions. This "pseudo-hypoxia" response was necessary for the maximal acquisition of anchorage-independent growth in arsenite-exposed BEAS-2B. The HIF-1A accumulation and induction in glycolysis was sustained throughout a 52 week course of arsenite exposure in BEAS-2B. There was a time-dependent increase in anchorage-independent growth during the exposure to arsenite. When HIF-1A expression was stably suppressed, arsenite-induced glycolysis was abrogated, and the anchorage-independent growth was reduced. These findings establish that arsenite exerts a hypoxia-mimetic effect, which plays an important role in the subsequent gain of malignancy-associated phenotypes.
流行病学研究已证实肺癌与砷暴露之间存在紧密联系。目前,细胞能量代谢紊乱在致癌过程中的作用是科学研究的一个热点。缺氧诱导因子-1α(HIF-1A)是能量代谢的关键调节因子,已发现在富氧条件下亚砷酸盐暴露期间它会积累。我们在体外使用非恶性肺上皮细胞系BEAS-2B对砷暴露的人肺上皮细胞进行建模。持续暴露于1μM亚砷酸盐(As)会导致贴壁依赖性生长在暴露6周时开始早期丧失,这通过软琼脂集落形成来测量。这种亚砷酸盐暴露导致HIF-1A积累并增加糖酵解,类似于对缺氧的生理反应,但在这种情况下是在富氧条件下。这种“假性缺氧”反应对于亚砷酸盐暴露的BEAS-2B中最大程度获得非贴壁依赖性生长是必要的。在BEAS-2B中,亚砷酸盐暴露52周的过程中,HIF-1A积累和糖酵解诱导持续存在。在亚砷酸盐暴露期间,非贴壁依赖性生长呈时间依赖性增加。当HIF-1A表达被稳定抑制时,亚砷酸盐诱导的糖酵解被消除,非贴壁依赖性生长减少。这些发现表明亚砷酸盐发挥了缺氧模拟效应,这在随后获得恶性相关表型中起重要作用。