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A Molecular Trigger for Sea Anemone Stinging

机译:海葵蜇伤的分子触发因素

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摘要

Understanding the mechanisms by which cells detect, integrate, and respond to distinct sensory cues is of fundamental importance to biological systems. Cnidarians, such as jellyfish, hydroids, and sea anemones, use specialized stinging cells called nematocytes that facilitate both sensation and secretion during prey capture and defense. Prey-derived mechanical and chemical cues synergistically trigger nematocytes to rapidly fire a venom-covered barb (nematocyst) through a previously unknown mechanism. Here, I show that nematocytes from Nematostella vectensis use a specialized voltage-gated calcium channel (nCaV) to distinguish salient sensory cues and control the explosive discharge response. Unique properties in nCaV confer unusually sensitive, voltage-dependent inactivation to inhibit responses to non-prey signals, such as mechanical water turbulence. Prey-derived chemosensory signals are synaptically transmitted to acutely relieve nCaV inactivation, thereby allowing for mechanically-triggered attack. Thus, the distinct voltage-dependent properties of nCaV allow nematocytes to selectively discriminate prey-derived cues from environmental noise. These findings reveal a molecular basis for the cnidarian stinging response and highlight how single proteins can integrate diverse cellular signals to mediate discrete behaviors.
机译:了解细胞检测、整合和响应不同感觉线索的机制对生物系统至关重要。刺胞动物,如水母、水螅和海葵,使用称为线细胞的特殊刺细胞,在猎物捕获和防御过程中促进感觉和分泌。猎物衍生的机械和化学线索协同触发线细胞,通过一种以前未知的机制快速发射毒液覆盖的倒钩(线虫囊)。在这里,我展示了来自 Nematostella vectensis 的线细胞使用专门的电压门控钙通道 (nCaV) 来区分显着的感觉线索并控制爆炸放电反应。nCaV 中的独特特性赋予异常敏感的电压依赖性失活,以抑制对非猎物信号(如机械水湍流)的反应。猎物来源的化学感应信号通过突触传递以急性缓解 nCaV 失活,从而允许机械触发的攻击。因此,nCaV 独特的电压依赖性特性使线细胞能够选择性地从环境噪声中区分猎物来源的线索。这些发现揭示了刺胞动物叮咬反应的分子基础,并强调了单个蛋白质如何整合不同的细胞信号以介导离散行为。

著录项

  • 作者

    Weir, Keiko;

  • 作者单位

    Harvard University;

    Harvard University;

    Harvard University;

  • 授予单位 Harvard University;Harvard University;Harvard University;
  • 学科 Neurosciences;Molecular biology;Cellular biology
  • 学位
  • 年度 2021
  • 页码 124
  • 总页数 124
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Neurosciences; Molecular biology; Cellular biology;

    机译:神经科学;分子生物学;细胞生物学;

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