Human intestinal acyl-CoA synthetase 5 is sensitive to the inhibitor triacsin C

来源 :World Journal of Gastroenterology | 被引量 : 0次 | 上传用户:qiushuigediao
下载到本地 , 更方便阅读
声明 : 本文档内容版权归属内容提供方 , 如果您对本文有版权争议 , 可与客服联系进行内容授权或下架
论文部分内容阅读
AIM:To investigate whether human acyl-CoA synthetase 5(ACSL5) is sensitive to the ACSL inhibitor triacsin C.METHODS:The ACSL isoforms ACSL1 and ACSL5 from rat as well as human ACSL5 were cloned and recombinantly expressed as 6xHis-tagged enzymes.Ni 2+-affinity purified recombinant enzymes were assayed at pH 7.5 or pH 9.5 in the presence or absence of triacsin C.In addition,ACSL5 transfected CaCo2 cells and intestinal human mucosa were monitored.ACSL5 expression in cellular systems was verified using Western blot and immunofluorescence.The ACSL assay mix included TrisHCl(pH 7.4),ATP,CoA,EDTA,DTT,MgCl 2,[9,103 H] palmitic acid,and triton X-100.The 200 μL reaction was initiated with the addition of solubilized,purified recombinant proteins or cellular lysates.Reactions were terminated after 10,30 or 60 min of incubation with Doles medium.RESULTS:Expression of soluble recombinant ACSL proteins was found after incubation with isopropyl betaD-1-thiogalactopyranoside and after ultracentrifugation these were further purified to near homogeneity with Ni 2+-affinity chromatography.Triacsin C selectively and strongly inhibited recombinant human ACSL5 protein at pH 7.5 and pH 9.5,as well as recombinant rat ACSL1(sensitive control),but not recombinant rat ACSL5(insensitive control).The IC50 for human ACSL5 was about 10 μmol/L.The inhibitory triacsin C effect was similar for different incubation times(10,30 and 60 min) and was not modified by the N-or C-terminal location of the 6xHis-tag.In order to evaluate ACSL5 sensitivity to triacsin C in a cellular environment,stable human ACSL5 CaCo2 transfectants and mechanically dissected normal human intestinal mucosa with high physiological expression of ACSL5 were analyzed.In both models,ACSL5 peak activity was found at pH 7.5 and pH 9.5,corresponding to the properties of recombinant human ACSL5 protein.In the presence of triacsin C(25 μmol/L),total ACSL activity was dramatically diminished in human ACSL5 transfectants as well as in ACSL5-rich human intestinal mucosa.CONCLUSION:The data strongly indicate that human ACSL5 is sensitive to triacsin C and does not compensate for other triacsin C-sensitive ACSL isoforms. AIM: To investigate whether human ACY-CoA synthetase 5 (ACSL5) is sensitive to the ACSL inhibitor triacsin C. METHODS: The ACSL isoforms ACSL1 and ACSL5 were cloned and recombinantly expressed as 6xHis-tagged enzymes. Ni 2 + -affinity purified recombinant enzymes were assayed at pH 7.5 or pH 9.5 in the presence or absence of triacsin C. In addition, ACSL5 transfected CaCo2 cells and intestinal human mucosa were monitored. ACSL5 expression in cellular systems was verified using Western blot and immunofluorescence The ACSL assay included TrisHCl (pH 7.4), ATP, CoA, EDTA, DTT, MgCl 2, [9,103 H] palmitic acid, and triton X-100. 200 μL reaction was initiated with the addition of solubilized, purified recombinant Proteins or cellular lysates. Reactions were terminated after 10, 30 or 60 min of incubation with Doles medium .RESULTS: Expression of soluble recombinant ACSL proteins was found after incubation with isopropyl betaD-1-thiogalactopyranoside and after ultracentrifugation a selective these were further purified to near homogeneity with Ni 2 + -affinity chromatography. Triacsin C selectively and strongly inhibited recombinant human ACSL5 protein at pH 7.5 and pH 9.5, as well as recombinant rat ACSL1 (sensitive control), but not recombinant rat ACSL5 ( insensitive control. The IC50 for human ACSL5 was about 10 μmol / L. The inhibitory triacsin C effect was similar for different incubation times (10, 30 and 60 min) and was not modified by the N- or C-terminal location of the 6xHis-tag.In order to evaluate ACSL5 sensitivity to triacsin C in a cellular environment, stable human ACSL5 CaCo2 transfectants and mechanically dissected normal human intestinal mucosa with high physiological expression of ACSL5 were analyzed.In both models, ACSL5 peak activity was found at pH 7.5 and pH 9.5, corresponding to the properties of recombinant human ACSL5 protein. The presence of triacsin C (25 μmol / L), total ACSL activity was dramatically diminished in human ACSL5 transfectants as well as in ACSL5-rich human intestinal mucosa. CONCLUSION: The data strongly indicate that human ACSL5 is sensitive to triacsin C and does not compensate for other triacsin C-sensitive ACSL isoforms.
其他文献
我们对大冶铁矿所属单位的376个班组安全“四落实”的情况进行了一次调查,结果表明,广大职工安全意识较过去明显增强,事故发生率明显下降.调查中,我们对其安全教育方法进行
由国家劳动部组织召开的《石油静电安全规程》国家标准专家审定会,审定并通过了《石油静电安全规程》。该项规程共包括:适用范围、引用标准、静电引燃起因、预防静电危害的
在原油价格高企,中石化、中石油所属的大炼厂抱怨“越炼越赔”的时候,山东地方小炼厂却“逆势扩张”。这是为什么? In the high crude oil prices, Sinopec, PetroChina own
农业生产由多种复杂环节组成。环节之间又相互衔接、彼此联系而形成一个整体多级的生态系统。其中物质转化的形式关系到生产潜力发挥的情况。在能量循环过程中,原来是一级转
青年药师演讲与论坛精彩纷呈本刊讯近日,由北京医药卫生文化协会、北京天坛医院、北京市中青年药师沙龙及北京科园信海医药经营有限公司共同主办的“临床药学文化建设机遇与
桃源县位于湖南西北部,属于北亚热带南缘季风气候区。境内有山区、丘陵和平原,目前,在丘陵和平原地区的耕作制度主要是三熟制:稻、稻、麦;稻、稻、油;稻、稻、豆;稻、稻、菜
伟大领袖和导师毛主席生前曾多次号召我们要学一点土壤学,认为土壤学是农业科学的基础科学。而如何正确认识土壤肥力,又是土壤学的核心问题。因此本文着重谈谈我们对土壤肥
土壤氮素矿化势(N_o值),是近年来国外用来衡量土壤供氮能力的重要指标之一。它可以在室内模拟田间条件下土壤氮素的矿化过程,预测不同土壤间氮素供应能力的相对高低,定量计算
土壤肥力土壤肥力就是土壤能够适应植物生长发育的能力.这种“适应能力”包括土壤的内在因素和外界环境条件两个方面.土壤的调节温度的性能(调温性)、调节水分的性能(调水性
The present study was aimed at the comparison of the pharmacokinetics of pure chlorogenic acid and extract of Solanum lyratum Thunb.The animals were allocated t