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Na^(+)/K^(+)-ATPase:ion pump,signal transducer,or cytoprotective protein,and novel biological functions
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作者 Songqiang Huang Wanting Dong +1 位作者 Xiaoqian Lin Jinsong Bian 《Neural Regeneration Research》 SCIE CAS CSCD 2024年第12期2684-2697,共14页
Na^(+)/K^(+)-ATPase is a transmembrane protein that has important roles in the maintenance of electrochemical gradients across cell membranes by transporting three Na^(+)out of and two K^(+)into cells.Additionally,Na^... Na^(+)/K^(+)-ATPase is a transmembrane protein that has important roles in the maintenance of electrochemical gradients across cell membranes by transporting three Na^(+)out of and two K^(+)into cells.Additionally,Na^(+)/K^(+)-ATPase participates in Ca^(2+)-signaling transduction and neurotransmitter release by coordinating the ion concentration gradient across the cell membrane.Na^(+)/K^(+)-ATPase works synergistically with multiple ion channels in the cell membrane to form a dynamic network of ion homeostatic regulation and affects cellular communication by regulating chemical signals and the ion balance among different types of cells.Therefo re,it is not surprising that Na^(+)/K^(+)-ATPase dysfunction has emerged as a risk factor for a variety of neurological diseases.However,published studies have so far only elucidated the important roles of Na^(+)/K^(+)-ATPase dysfunction in disease development,and we are lacking detailed mechanisms to clarify how Na^(+)/K^(+)-ATPase affects cell function.Our recent studies revealed that membrane loss of Na^(+)/K^(+)-ATPase is a key mechanism in many neurological disorders,particularly stroke and Parkinson's disease.Stabilization of plasma membrane Na^(+)/K^(+)-ATPase with an antibody is a novel strategy to treat these diseases.For this reason,Na^(+)/K^(+)-ATPase acts not only as a simple ion pump but also as a sensor/regulator or cytoprotective protein,participating in signal transduction such as neuronal autophagy and apoptosis,and glial cell migration.Thus,the present review attempts to summarize the novel biological functions of Na^(+)/K^(+)-ATPase and Na^(+)/K^(+)-ATPase-related pathogenesis.The potential for novel strategies to treat Na^(+)/K^(+)-ATPase-related brain diseases will also be discussed. 展开更多
关键词 antibody biological functions cellular communication electrochemical gradient ion balance ion channels Na^(+)/K^(+)-atpase neurological diseases neurotransmitter release signal transduction
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松油烯-4-醇及其酯类衍生物对家蝇Na^+,K^+-ATPase活性的抑制作用
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作者 郭志波 马志卿 +1 位作者 冯俊涛 张兴 《中国农业科学》 CAS CSCD 北大核心 2008年第10期3110-3115,共6页
【目的】探讨松油烯-4-醇的杀虫作用机理。【方法】采用点滴法测定了松油烯-4-醇及其6种酯类衍生物乙酸酯(Z1)、丙酸酯(Z2)、丙烯酸酯(Z3)、苯甲酸酯(Z4)、苯磺酸酯(Z5)、对甲苯磺酸酯(Z6)对家蝇成虫的触杀活性及对其体内Na+,K+-ATPase... 【目的】探讨松油烯-4-醇的杀虫作用机理。【方法】采用点滴法测定了松油烯-4-醇及其6种酯类衍生物乙酸酯(Z1)、丙酸酯(Z2)、丙烯酸酯(Z3)、苯甲酸酯(Z4)、苯磺酸酯(Z5)、对甲苯磺酸酯(Z6)对家蝇成虫的触杀活性及对其体内Na+,K+-ATPase活性的影响。【结果】松油烯-4-醇及其酯类衍生物对家蝇均具有一定的触杀活性,除丙烯酸酯外,其它酯类衍生物的触杀毒力均高于或相当于松油烯-4-醇;活体条件下,7种化合物均对Na+,K+-ATPase具有较强的抑制作用,且随着中毒症状的加剧,对该酶的抑制作用增强;离体条件下,松油烯-4-醇及其乙酸酯、丙酸酯、苯甲酸酯、苯磺酸酯、对甲苯磺酸酯衍生物对家蝇Na+,K+-ATPase的IC50分别为155.89、197.98、96.02、121.36、124.85、153.74μg·ml-1;分析发现松油烯-4-醇及其酯类衍生物对家蝇24h的触杀LD50与对Na+,K+-ATPase的IC50之间具有显著相关性。【结论】Na+,K+-ATPase可能是松油烯-4-醇类化合物的主要作用靶标。 展开更多
关键词 松油烯-4-醇 松油烯-4-醇酯类衍生物 Na^+ K^+-atpase 家蝇
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