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在钙离子敏感性方面与RCH1遗传互作的酿酒酵母基因的筛选
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作者 王立通 徐慧慧 蒋伶活 《微生物学杂志》 CAS CSCD 2018年第1期34-41,共8页
酿酒酵母ScRCH1是白念珠菌CaRCH1的同功基因,作为人体溶质转运蛋白SLC10A7的同源蛋白,两者都是细胞质膜上钙离子内流的抑制因子。为了研究酿酒酵母RCH1与基因组中其他基因之间的遗传互作,利用合成遗传阵列(Synthetic Genetic Array,SGA... 酿酒酵母ScRCH1是白念珠菌CaRCH1的同功基因,作为人体溶质转运蛋白SLC10A7的同源蛋白,两者都是细胞质膜上钙离子内流的抑制因子。为了研究酿酒酵母RCH1与基因组中其他基因之间的遗传互作,利用合成遗传阵列(Synthetic Genetic Array,SGA)方法构建了RCH1分别与其他非必需基因之间的双基因缺失株文库。钙离子表型筛选表明RCH1与17个基因之间存在遗传互作,其中4个基因BUD9、THR1、RAS2和CPR7在钙离子敏感性方面的功能以前没有报道过。这些结果为深入研究Rch1对钙离子稳态的调控提供了参考。 展开更多
关键词 酿酒酵母 RCH1 合成遗传阵列 钙离子耐受 遗传互作
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Isolation of Ca^(2+) Tolerant Cardiomyocytes from Aadult Rats for Patch Clamp Studies 被引量:2
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作者 徐华娥 陶金 +2 位作者 陈洁 汪红仪 李胜男 《Journal of Nanjing Medical University》 2004年第1期4-6,共3页
Objective: To investigate the factors affecting the viability and Ca 2+ tolerance of isolated rats' cardiac myocytes for patch clamp research. Methods: Hearts were firstly perfused by the Langendorff perfusion ... Objective: To investigate the factors affecting the viability and Ca 2+ tolerance of isolated rats' cardiac myocytes for patch clamp research. Methods: Hearts were firstly perfused by the Langendorff perfusion apparatus with normal Tyrode's solution, then with Ca 2+-free Tyrode's solution and subsequently with low Ca 2+ enzyme solution containing collagenase 0.1-0.2 g/L. All the solutions were saturated with oxygen and the perfusion temperature was kept at 37 ℃. Finally hearts were washed by Ca 2+-free Tyrode's solution, after which the ventricles were minced into small pieces in KB solution, dispersed and filtered. The isolated myocytes were stored in KB solution at room temperature for 1 h and recovered to normal calcium concentration before patch clamp experiments.Results: When all the factors such as water, enzyme, Ca 2+,pH, and oxygen were well controlled, the well constructed and rod-like cardiac myocytes with a yielding rate of 30%-50% came out.Conclusion: All the factors should be well controlled, which ensured the isolated cells Ca 2+ tolerant and appropriate for patch clamp experiments. 展开更多
关键词 ISOLATION cardiac myocyte PATCH-CLAMP Tyrode
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