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Drosophila models used to simulate human ATP1A1 gene mutations that cause Charcot-Marie-Tooth type 2 disease and refractory seizures
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作者 Yao Yuan Lingqi Yu +8 位作者 Xudong Zhuang Dongjing Wen Jin He Jingmei Hong Jiayu Xie Shengan Ling Xiaoyue Du Wenfeng Chen Xinrui Wang 《Neural Regeneration Research》 SCIE CAS 2025年第1期265-276,共12页
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
关键词 ATP1A1 Atpα bang-sensitive paralysis Charcot-Marie-Tooth disease type 2 CRISPR/Cas9 homology-directed repair Na^(+)/K^(+)-ATPase point mutation seizures sodium pump
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AtJAR1基因在拟南芥耐盐性中的功能分析 被引量:4
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作者 李丹丹 林蓉 +1 位作者 李新国 郑月萍 《浙江农林大学学报》 CAS CSCD 北大核心 2022年第5期998-1009,共12页
【目的】茉莉酰氨基酸结合物合成酶(jasmonoyl amino acid conjugate synthase,JAR1)可以催化茉莉酸(jasmonic acid,JA)形成茉莉酸的活性形式茉莉酸异亮氨基酸复合体(jasmonic acid-isoleucine,JA-Ile),从而激活JA信号途径。JA信号途径... 【目的】茉莉酰氨基酸结合物合成酶(jasmonoyl amino acid conjugate synthase,JAR1)可以催化茉莉酸(jasmonic acid,JA)形成茉莉酸的活性形式茉莉酸异亮氨基酸复合体(jasmonic acid-isoleucine,JA-Ile),从而激活JA信号途径。JA信号途径在介导植物盐胁迫的响应中发挥重要作用,因此,探究AtJAR1在植物耐盐性中的功能对于研究JA信号途径影响植物耐盐性的机制具有重要作用。【方法】运用CRISPR/Cas9基因编辑技术,创建了2个不同的拟南芥Arabidopsis thaliana AtJAR1基因突变体,并对这2个突变体进行地上部生物量的统计分析和JA信号标记基因的表达分析,以确定AtJAR1基因功能缺失。之后,观察分析不同浓度氯化钠和脱落酸(ABA)处理对jar1突变体的种子萌发和幼苗建成的影响,明确AtJAR1基因对拟南芥耐盐性的影响。最后,通过比较分析盐处理前后野生型和突变体的钾离子(K^(+))和钠离子(Na^(+))质量摩尔浓度,以及高亲和力K~+转运蛋白基因AtHAK5的表达变化情况,初步探究AtJAR1基因在拟南芥耐盐性中的功能。【结果】JA信号标记基因AtVSP1和AtVSP2的表达量大幅下调,表明AtJAR1基因功能丧失。与点突变产生的jar1-1突变体不同的是,这2个突变体表现为前3周生长加快,之后逐渐减缓并出现叶片萎蔫的表型。同时,AtJAR1突变可以缓解盐胁迫和ABA对种子萌发和根系生长产生的抑制作用。此外,盐胁迫下AtJAR1突变可以促进AtHAK5的表达和根系对K~+的吸收转运。【结论】JA信号途径可能通过与ABA交互作用影响AtHAK5的表达量,以调节植物根系对K+的吸收转运,进而改变细胞内K^(+)/Na^(+)平衡,最终影响植物耐盐性。 展开更多
关键词 拟南芥 CRISPR/Cas9 茉莉酰氨基酸结合物合成酶 耐盐性 K^(+)/Na^(+)平衡
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