Certain amino acids changes in the human Na^(+)/K^(+)-ATPase pump,ATPase Na^(+)/K^(+)transporting subunit alpha 1(ATP1A1),cause Charcot-Marie-Tooth disease type 2(CMT2)disease and refractory seizures.To develop in viv...Certain amino acids changes in the human Na^(+)/K^(+)-ATPase pump,ATPase Na^(+)/K^(+)transporting subunit alpha 1(ATP1A1),cause Charcot-Marie-Tooth disease type 2(CMT2)disease and refractory seizures.To develop in vivo models to study the role of Na^(+)/K^(+)-ATPase in these diseases,we modified the Drosophila gene homolog,Atpα,to mimic the human ATP1A1 gene mutations that cause CMT2.Mutations located within the helical linker region of human ATP1A1(I592T,A597T,P600T,and D601F)were simultaneously introduced into endogenous Drosophila Atpαby CRISPR/Cas9-mediated genome editing,generating the Atpα^(TTTF)model.In addition,the same strategy was used to generate the corresponding single point mutations in flies(Atpα^(I571T),Atpα^(A576T),Atpα^(P579T),and Atpα^(D580F)).Moreover,a deletion mutation(Atpα^(mut))that causes premature termination of translation was generated as a positive control.Of these alleles,we found two that could be maintained as homozygotes(Atpα^(I571T)and Atpα^(P579T)).Three alleles(Atpα^(A576T),Atpα^(P579)and Atpα^(D580F))can form heterozygotes with the Atpαmut allele.We found that the Atpαallele carrying these CMT2-associated mutations showed differential phenotypes in Drosophila.Flies heterozygous for Atpα^(TTTF)mutations have motor performance defects,a reduced lifespan,seizures,and an abnormal neuronal morphology.These Drosophila models will provide a new platform for studying the function and regulation of the sodium-potassium pump.展开更多
目的:通过数据挖掘分析ATP1A1在肾透明细胞癌中的表达及意义。方法:通过Oncomine数据库检索关于ATP1A1的mRNA信息,采用The Human Protein Atlas分析ATP1A1蛋白在正常肾组织和肾透明细胞癌中表达情况,GEPIA网站中TCGA数据对ATP1A1低表达...目的:通过数据挖掘分析ATP1A1在肾透明细胞癌中的表达及意义。方法:通过Oncomine数据库检索关于ATP1A1的mRNA信息,采用The Human Protein Atlas分析ATP1A1蛋白在正常肾组织和肾透明细胞癌中表达情况,GEPIA网站中TCGA数据对ATP1A1低表达的肾透明细胞癌患者进行生存分析,Meth HC数据库分析ATP1A1甲基化水平和蛋白相互作用,利用String-DB数据分析ATP1A1与上下游蛋白的相互作用。结果:肾透明细胞癌(Clear cell Renal Cell Carcinoma,cc RCC)组织中ATP1A1的mRNA表达水平较正常对照组明显降低。免疫组化结果证实ATP1A1蛋白质表达变化与mRNA相似。TCGA数据中得出ATP1A1低表达患者的总体生存期明显短于高表达组患者。此外,ATP1A1基因启动子区在肾透明细胞癌中的甲基化水平明显高于正常肾组织中。同时,ATP1A1与ATP1B1、FXYD2、ATP1B2等蛋白可能存在相互作用。结论:大数据分析结果表明ATP1A1在肾透明细胞癌中低表达,并与其发生发展相关,可能作为其潜在的治疗靶点。展开更多
基金supported by the Natural Science Foundation of Fujian Province,No.2020J02027the National Natural Science Foundation of China,No.31970461the Foundation of NHC Key Laboratory of Technical Evaluation of Fertility Regulation for Non-human Primate,Fujian Maternity and Child Health Hospital,No.2022-NHP-05(all to WC).
文摘Certain amino acids changes in the human Na^(+)/K^(+)-ATPase pump,ATPase Na^(+)/K^(+)transporting subunit alpha 1(ATP1A1),cause Charcot-Marie-Tooth disease type 2(CMT2)disease and refractory seizures.To develop in vivo models to study the role of Na^(+)/K^(+)-ATPase in these diseases,we modified the Drosophila gene homolog,Atpα,to mimic the human ATP1A1 gene mutations that cause CMT2.Mutations located within the helical linker region of human ATP1A1(I592T,A597T,P600T,and D601F)were simultaneously introduced into endogenous Drosophila Atpαby CRISPR/Cas9-mediated genome editing,generating the Atpα^(TTTF)model.In addition,the same strategy was used to generate the corresponding single point mutations in flies(Atpα^(I571T),Atpα^(A576T),Atpα^(P579T),and Atpα^(D580F)).Moreover,a deletion mutation(Atpα^(mut))that causes premature termination of translation was generated as a positive control.Of these alleles,we found two that could be maintained as homozygotes(Atpα^(I571T)and Atpα^(P579T)).Three alleles(Atpα^(A576T),Atpα^(P579)and Atpα^(D580F))can form heterozygotes with the Atpαmut allele.We found that the Atpαallele carrying these CMT2-associated mutations showed differential phenotypes in Drosophila.Flies heterozygous for Atpα^(TTTF)mutations have motor performance defects,a reduced lifespan,seizures,and an abnormal neuronal morphology.These Drosophila models will provide a new platform for studying the function and regulation of the sodium-potassium pump.
文摘目的:通过数据挖掘分析ATP1A1在肾透明细胞癌中的表达及意义。方法:通过Oncomine数据库检索关于ATP1A1的mRNA信息,采用The Human Protein Atlas分析ATP1A1蛋白在正常肾组织和肾透明细胞癌中表达情况,GEPIA网站中TCGA数据对ATP1A1低表达的肾透明细胞癌患者进行生存分析,Meth HC数据库分析ATP1A1甲基化水平和蛋白相互作用,利用String-DB数据分析ATP1A1与上下游蛋白的相互作用。结果:肾透明细胞癌(Clear cell Renal Cell Carcinoma,cc RCC)组织中ATP1A1的mRNA表达水平较正常对照组明显降低。免疫组化结果证实ATP1A1蛋白质表达变化与mRNA相似。TCGA数据中得出ATP1A1低表达患者的总体生存期明显短于高表达组患者。此外,ATP1A1基因启动子区在肾透明细胞癌中的甲基化水平明显高于正常肾组织中。同时,ATP1A1与ATP1B1、FXYD2、ATP1B2等蛋白可能存在相互作用。结论:大数据分析结果表明ATP1A1在肾透明细胞癌中低表达,并与其发生发展相关,可能作为其潜在的治疗靶点。