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Tissue-Specific Cross-Reactivity of Connexin32 Antibodies: Problems and Solutions Unique to the Central Nervous System

机译:Connexin32抗体的组织特异性交叉反应:中枢神经系统独有的问题和解决方案

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Gap junction proteins are a highly homologous family of 21 connexins. Here, the authors describe a tissue-specific technical artifact complicating analysis of connexin32 protein expression in the central nervous system. The authors show that in brain, but not liver, eight commonly employed antibodies exhibit a higher affinity for a cross-reactive protein that masks the detection of connexin32. Cross-reactivity is evident in Western blot analyses when proteins are subjected to reducing/denaturing conditions but not immunoprecipitation or immunofluorescent applications. Through bioinformatic analyses, tested by sucrose gradient fractionation and immunoblotting of lysates from connexin null-mutant mice, the authors show that the cross-reactive protein is not found in the same cellular compartments as connexin32 and is likely not a member of the connexin family. These findings are presented with the intent of helping to reduce the amount of time laboratories currently expend in validating changes in connexin32 expression in the central nervous system.
机译:间隙连接蛋白是21种连接蛋白的高度同源家族。在这里,作者描述了一种组织特异性技术伪影,使中枢神经系统中connexin32蛋白表达的分析复杂化。作者表明,在大脑而非肝脏中,八种常用抗体对交叉反应蛋白的亲和力更高,从而掩盖了connexin32的检测。当蛋白质经历还原/变性条件而不是免疫沉淀或免疫荧光应用时,在蛋白质印迹分析中交叉反应是显而易见的。通过蔗糖梯度分级分离和连接蛋白无效突变小鼠裂解物的免疫印迹测试,通过生物信息学分析,作者们发现交叉反应蛋白与连接蛋白32不在同一细胞区室,并且可能不是连接蛋白家族的成员。这些发现旨在帮助减少实验室目前用于验证中枢神经系统中connexin32表达变化的时间。

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