Suppr超能文献

不同化学感受器对毛束的拮抗频率调谐调节刺丝囊放电。

ANTAGONISTIC FREQUENCY TUNING OF HAIR BUNDLES BY DIFFERENT CHEMORECEPTORS REGULATES NEMATOCYST DISCHARGE.

作者信息

Watson G, Hessinger D

出版信息

J Exp Biol. 1994 Feb;187(1):57-73. doi: 10.1242/jeb.187.1.57.

Abstract

Sea anemones capture prey by discharging nematocysts into them. Chemical and mechanical cues identify suitable prey to sensory receptor systems on the anemone. Conjugated N-acetylated sugars from prey bind to chemoreceptors on cnidocyte/supporting cell complexes to tune hair bundles on the complexes to lower frequencies matching prey movements. The hair bundles regulate discharge of microbasic p-mastigophore nematocysts into vibrating targets. Provided that proline receptors are activated after those for N-acetylated sugars, nematocyst discharge is tuned to much higher frequencies. Thus, anemone hair bundles are tuned to either higher or lower frequencies by antagonistic chemoreceptors. Chemoreceptors for proline can adapt to 10(-8) mol l-1 proline and yet respond to increases in proline concentration of less than 10(-15) mol l-1. Under these conditions, too few molecules of proline are added to activate chemoreceptors on all responding cnidocyte/supporting cell complexes. Evidence indicates that the extreme sensitivity of anemones to proline may be attributed, in part, to intercellular communication.

摘要

海葵通过向猎物释放刺丝囊来捕获猎物。化学和机械线索可将合适的猎物识别给海葵上的感觉受体系统。来自猎物的共轭N-乙酰化糖与刺细胞/支持细胞复合体上的化学感受器结合,从而将复合体上的毛束调节到与猎物运动相匹配的较低频率。毛束将微碱性p-鞭毛型刺丝囊释放到振动的目标中。如果脯氨酸受体在N-乙酰化糖受体之后被激活,刺丝囊的释放会被调节到高得多的频率。因此,海葵的毛束通过拮抗化学感受器被调节到更高或更低的频率。脯氨酸的化学感受器可以适应10^(-8) mol l^(-1) 的脯氨酸,但仍能对脯氨酸浓度小于10^(-15) mol l^(-1) 的增加做出反应。在这些条件下,添加的脯氨酸分子太少,无法激活所有有反应的刺细胞/支持细胞复合体上的化学感受器。有证据表明,海葵对脯氨酸的极端敏感性可能部分归因于细胞间通讯。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验