首页> 外文期刊>Cell cycle >Novel assay utilizing fluorochrome-tagged physostigmine (Ph-F) to in situ detect active acetylcholinesterase (AChE) induced during apoptosis.
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Novel assay utilizing fluorochrome-tagged physostigmine (Ph-F) to in situ detect active acetylcholinesterase (AChE) induced during apoptosis.

机译:利用荧光染料标记的毒扁豆碱(Ph-F)原位检测凋亡过程中诱导的活性乙酰胆碱酯酶(AChE)的新方法。

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摘要

It was recently reported that acetylcholinesterase (AChE) is expressed in cells undergoing apoptosis and that its presence is essential for assembly of the apoptosome and subsequent caspase-9 activation. To obtain a marker of active AChE that could assay this enzyme in live intact cells and be applicable to fluorescence microscopy and cytometry, the fluorescein-tagged physostigmine (Ph-F), high affinity ligand (inhibitor) reactive with the active center of AChE, was constructed and tested for its ability to in situ label AChE and measure its induction during apoptosis. Ph-F inhibited cholinesterase activity in vitro (IC50 = 10(-6) and 5 x 10(-6) M for equine butyrylcholinesterase and human erythrocyte AChE, respectively) and was a selective marker of cells and structures that were AChE-positive. Thus, exposure of mouse bone marrow cells to Ph-F resulted in the exclusive labeling of megakaryocytes, and of the diaphragm muscle, preferential labeling of the nerve-muscle junctions (end-plates). During apoptosis of carcinoma HeLa cells and leukemic HL-60 or Jurkat cells triggered either by the DNA topoisomerase 1 inhibitor topotecan (TPT) or by oxidative stress (H2O2), the cells become reactive with Ph-F. Their Ph-F derived fluorescence was measured by flow and laser scanning cytometry. The appearance of Ph-F binding sites during apoptosis was preceded by the loss of mitochondrial potential, was concurrent with the presence of activated caspases, and was followed by loss of membrane integrity. At a very early stage of apoptosis, when nucleolar segregation was apparent, the Ph-F binding sites were distinctly localized within the nucleolus and at later stages of apoptosis in the cytoplasm. During apoptosis triggered by TPT, Ph-F binding was preferentially induced in S-phase cells. Our data on megakaryocytes and end-plates indicate that Ph-F reacts with active sites of AChE, and can be used to reveal the presence of this enzyme in live cells and possibly to study its expression in disorders of the neurological cholinergic system. The findings are also compatible with the reports that AChE may be induced during apoptosis. In fact, the simple and rapid Ph-F binding assay may serve as a convenient marker of apoptotic cells. However, the proposed role of active AChE as an essential factor for assembly of the apoptosome and caspase activation is in question because the AChE inhibitors Ph, Ph-F and BW284c51 did not protect the cells from apoptosis induced by TPT or H2O2. Further studies are thus needed to ascertain the induction and role of AChE in apoptosis.
机译:最近报道,乙酰胆碱酯酶(AChE)在经历凋亡的细胞中表达,并且其存在对于凋亡小体的组装和随后的caspase-9激活是必不可少的。为了获得可以在活的完整细胞中测定该酶的活性AChE的标记,并将其应用于荧光显微镜和细胞计数,荧光素标记的毒扁豆碱(Ph-F)是一种与AChE活性中心反应的高亲和力配体(抑制剂),构建并测试其在原位标记AChE并测量其在凋亡过程中的诱导能力。 Ph-F在体外抑制胆碱酯酶活性(马丁酰胆碱酯酶和人红细胞AChE的IC50分别为10(-6)和5 x 10(-6)M),并且是AChE阳性细胞和结构的选择性标记。因此,小鼠骨髓细胞暴露于Ph-F会导致巨核细胞和diaphragm肌的唯一标记,从而优先标记神经肌肉接头(终板)。在DNA拓扑异构酶1抑制剂拓扑替康(TPT)或氧化应激(H2O2)触发的HeLa细胞和白血病HL-60或Jurkat细胞凋亡期间,细胞与Ph-F反应。通过流式细胞术和激光扫描细胞术测量了它们的Ph-F衍生荧光。细胞凋亡过程中出现Ph-F结合位点之前是线粒体电位的丧失,是激活的胱天蛋白酶的存在,随后是膜完整性的丧失。在细胞凋亡的早期,当明显的核仁分离时,Ph-F结合位点明显位于核仁中,并在细胞质的细胞凋亡的后期。在由TPT触发的凋亡过程中,优先在S期细胞中诱导Ph-F结合。我们在巨核细胞和终板中的数据表明,Ph-F与AChE的活性位点发生反应,可用于揭示该酶在活细胞中的存在,并可能用于研究其在神经系统胆碱能系统疾病中的表达。这些发现也与凋亡过程中可能诱导AChE的报道相吻合。实际上,简单而快速的Ph-F结合测定可作为凋亡细胞的便捷标记。然而,由于AChE抑制剂Ph,Ph-F和BW284c51不能保护细胞免受TPT或H2O2诱导的细胞凋亡,因此拟议的活性AChE作为凋亡小体和胱天蛋白酶激活组装的必要因素的提议作用尚有疑问。因此,需要进一步的研究来确定AChE在细胞凋亡中的诱导和作用。

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