Berglund Susanne R, Santana Alison R, Li Dan, Rice Robert H, Rocke David M, Goldberg Zelanna
Siemens Healthcare Diagnostics, West Sacramento, CA, USA.
Proteomics. 2009 Apr;9(7):1925-38. doi: 10.1002/pmic.200800118.
Human exposure to arsenic and ionizing radiation (IR) occur environmentally at low levels. While the human health effects of arsenic and IR have been examined separately, there is little information regarding their combined effects at doses approaching environmental levels. Arsenic toxicity may be affected by concurrent IR especially given their known individual carcinogenic actions at higher doses. We found that keratinocytes responded to either low dose arsenic and/or low dose IR exposure, resulting in differential proteomic expression based on 2-DE, immunoblotting and statistical analysis. Seven proteins were identified that passed a rigorous statistical screen for differential expression in 2-DE and also passed a strict statistical screen for follow-up immunoblotting. These included: alpha-enolase, epidermal-fatty acid binding protein, heat shock protein 27, histidine triad nucleotide-binding protein 1, lactate dehydrogenase A, protein disulfide isomerase precursor, and S100A9. Four proteins had combined effects that were different than would be expected based on the response to either individual toxicant. These data demonstrate a possible reaction to the combined insult that is substantially different from that of either separate treatment. Several proteins had different responses than what has been seen from high dose exposures, adding to the growing literature suggesting that the cellular responses to low dose exposures are distinct.
人类在环境中会低水平接触砷和电离辐射(IR)。虽然已经分别研究了砷和电离辐射对人类健康的影响,但对于接近环境水平剂量下它们的联合影响却知之甚少。鉴于砷和电离辐射在高剂量下已知的个体致癌作用,砷的毒性可能会受到同时存在的电离辐射的影响。我们发现角质形成细胞对低剂量砷和/或低剂量电离辐射暴露有反应,基于二维电泳(2-DE)、免疫印迹和统计分析,导致蛋白质组表达存在差异。鉴定出七种蛋白质,它们在二维电泳中通过了严格的差异表达统计筛选,并且在后续免疫印迹中也通过了严格的统计筛选。这些蛋白质包括:α-烯醇化酶、表皮脂肪酸结合蛋白、热休克蛋白27、组氨酸三联体核苷酸结合蛋白1、乳酸脱氢酶A、蛋白质二硫键异构酶前体和S100A9。四种蛋白质的联合效应与基于对单一毒物反应所预期的不同。这些数据表明,对联合损伤可能存在一种与单独处理截然不同的反应。几种蛋白质的反应与高剂量暴露时所观察到的不同,这进一步增加了越来越多的文献所表明的观点,即细胞对低剂量暴露的反应是独特的。