Blechman Janna, Anbalagan Savani, Matthews Gary G, Levkowitz Gil
Department of Molecular Cell Biology, Weizmann Institute of Science, Rehovot, Israel.
Department of Neurobiology and Behavior, Stony Brook University, New York, NY, United States.
Front Cell Dev Biol. 2018 Sep 20;6:117. doi: 10.3389/fcell.2018.00117. eCollection 2018.
Presynaptic cGMP-gated ion (CNG) channels positively or negatively modulate neurotransmitter secretion as well as the strength of synaptic transmission. Zebrafish cGMP-gated ion channel, CNGA2a (a.k.a. CNGA5), was previously reported to be specifically enriched in synaptic terminals of zebrafish oxytocin (OXT) neurons. This conclusion was based on immunoreactivity of a monoclonal antibody (mAb) clone L55/54, which was directed against the carboxy terminal tail of the CNGA2a. To study the role of CNGA2a in oxytocin neurons function, we generated zebrafish mutants of and genes using clustered regularly interspaced short palindromic repeats (CRISPR)-mediated genome editing. We show that mAb L55/54 specifically recognizes CNGA2a protein when expressed in heterologous cell culture system. Surprisingly, anti-CNGA2a immunoreactivity was not eliminated following knockout of either or both. However, knockout of resulted in total loss of anti-CNGA2a mAb immunoreactivity despite the lack of sequence and structural similarities between OXT and CNGA2a proteins. Our results provide a noteworthy lesson of differences in antibody immunoreactivity, which could only be revealed using specific genetic tools.
突触前环磷酸鸟苷门控离子(CNG)通道对神经递质分泌以及突触传递强度具有正向或负向调节作用。斑马鱼环磷酸鸟苷门控离子通道CNGA2a(又称CNGA5),先前报道其在斑马鱼催产素(OXT)神经元的突触终末中特异性富集。这一结论基于单克隆抗体(mAb)克隆L55/54的免疫反应性,该抗体针对CNGA2a的羧基末端尾巴。为了研究CNGA2a在催产素神经元功能中的作用,我们使用成簇规律间隔短回文重复序列(CRISPR)介导的基因组编辑技术生成了斑马鱼 和 基因的突变体。我们发现,mAb L55/54在异源细胞培养系统中表达时能特异性识别CNGA2a蛋白。令人惊讶的是,敲除 或两者后,抗CNGA2a免疫反应性并未消除。然而,尽管OXT和CNGA2a蛋白之间缺乏序列和结构相似性,但敲除 导致抗CNGA2a单克隆抗体免疫反应性完全丧失。我们的结果为抗体免疫反应性差异提供了一个值得注意的教训,只有使用特定的遗传工具才能揭示这种差异。