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AMAP评估报告解读:气候变化对北极地区持久性有机污染物和新污染物的影响
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作者 潘忆遥 卫立甲 +2 位作者 咸昊 陈雨 杨瑞强 《冰川冻土》 CSCD 北大核心 2023年第6期1767-1775,共9页
气候变化显著影响北极地区的海陆环境,进而影响北极地区典型污染物的来源、传输与环境归趋。北极监测与评估计划(AMAP)近期发布的AMAP 2020评估报告《北极地区持久性有机污染物(POPs)和新污染物(CEACs):气候变化的影响》指出:(1)气候变... 气候变化显著影响北极地区的海陆环境,进而影响北极地区典型污染物的来源、传输与环境归趋。北极监测与评估计划(AMAP)近期发布的AMAP 2020评估报告《北极地区持久性有机污染物(POPs)和新污染物(CEACs):气候变化的影响》指出:(1)气候变暖导致北极冰冻圈内长期储存的污染物重新释放和再分配,北极地区随人类活动加剧产生新污染物排放;(2)气候变暖增强了POPs长距离迁移潜力,海洋“生物泵”过程的强化增加了POPs在深海水域的沉积存储;(3)气候变化产生自然环境变化与生物生态变化,进而影响北极食物网的污染物赋存状态和当地居民的暴露水平。该评估报告显示,气候变化对POPs和CEACs的影响十分复杂,相关机制仍有待深入研究。未来需要将更多具有POPs性质的化学品纳入监管,继续开展国家监测项目,加强跨学科交流与活动以及政府、学校、北极本地居民间的合作。 展开更多
关键词 持久性有机污染物 北极 气候变化 迁移 归趋 AMAP
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ZNT1 Involves Cuproptosis through Regulating MTF1-conduced Expression of MT1X under Copper Overload
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作者 Wu Yue Yang Tingyun +4 位作者 Yan Bo Ai Youwei Chen Fang Ma Juan Liu Sijin 《生态毒理学报》 CAS 2024年第4期53-70,共18页
Industrial activities such as smelting emissions,mineral combustion and industrial wastewater discharge might lead to copper pollution in the environment.This kind of copper pollution has harmful effects on aquatic o ... Industrial activities such as smelting emissions,mineral combustion and industrial wastewater discharge might lead to copper pollution in the environment.This kind of copper pollution has harmful effects on aquatic o rganisms,plants and animals through direct or indirect exposure.However,the current understanding of the toxicity of copper is rather limited.Copper overload can perturb intracellular homeostasis and induce oxidative stress and e ven cell death.Recently,cuproptosis has been identified as a copper-dependent form of cell death induced by o xidative stress in mitochondria.We uncover here that zinc transporter 1(ZNT1)is an important regulator involved in cuproptosis.Firstly,we established the copper overload-induced cell death model with the overexpression of copper importer SLC31A1 in HeLa cells.Using this model,we conducted unbiased genome-wide CRISPR-Cas9 screens in cells treated with copper.Our results revealed a significant enrichment of ZNT1 gene in both library A and library B plasmids.Knocking out of ZNT1 in HeLa cells notably prevented cuproptosis.Subsequent knockout of metal transcription factor 1(MTF1)in ZNT1-deficient cells nearly abolished their ability to resist copper-induced cell death.However,overexpression of metallothionein 1X(MT1X)in the double-knockout cells could p artially restored the resistance to cuproptosis by loss of MTF1.Mechanistically,knockout of ZNT1 could promote MT1X expression by activating MTF1.As a consequence,the interaction between MT1X and copper was e nhanced,reducing the flow of copper into mitochondria and eliminating mitochondria damage.Taken together,this study reveals the important role of ZNT1 in cuproptosis and shows MTF1-MT1X axis mediated resistance to c uproptosis.Moreover,our study will help to understand the regulatory mechanism of cellular and systemic copper homeostasis under copper overload,and present insights into novel treatments for damages caused by both genetic copper overload diseases and environmental copper contamination. 展开更多
关键词 copper cuproptosis ZNT1 MT1X
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