Shimozono Satoshi, Fukano Takashi, Kimura Koutarou D, Mori Ikue, Kirino Yutaka, Miyawaki Atsushi
Laboratory for Cell Function Dynamics, Brain Science Institute, The Institute of Physical and Chemical Research (RIKEN), 2-1 Hirosawa, Wako-city, Saitama, 351-0198, Japan.
EMBO Rep. 2004 May;5(5):521-6. doi: 10.1038/sj.embor.7400142. Epub 2004 Apr 16.
The pharyngeal muscles of Caenorhabditis elegans are composed of the corpus, isthmus and terminal bulb from anterior to posterior. These components are excited in a coordinated fashion to facilitate proper feeding through pumping and peristalsis. We analysed the spatiotemporal pattern of intracellular calcium dynamics in the pharyngeal muscles during feeding. We used a new ratiometric fluorescent calcium indicator and a new optical system that allows simultaneous illumination and detection at any two wavelengths. Pumping was observed with fast, repetitive and synchronous spikes in calcium concentrations in the corpus and terminal bulb, indicative of electrical coupling throughout the muscles. The posterior isthmus, however, responded to only one out of several pumping spikes to produce broad calcium transients, leading to peristalsis, the slow and gradual motion needed for efficient swallows. The excitation-calcium coupling may be uniquely modulated in this region at the level of calcium channels on the plasma membrane.
秀丽隐杆线虫的咽部肌肉从前到后由体部、峡部和终球组成。这些组成部分以协调的方式被激发,以通过抽吸和蠕动促进正常进食。我们分析了进食过程中咽部肌肉细胞内钙动力学的时空模式。我们使用了一种新的比率荧光钙指示剂和一种新的光学系统,该系统允许在任意两个波长下同时进行照明和检测。在体部和终球中观察到抽吸伴随着钙浓度的快速、重复和同步尖峰,这表明整个肌肉存在电耦合。然而,后部峡部仅对几个抽吸尖峰中的一个做出反应,产生广泛的钙瞬变,从而导致蠕动,即有效吞咽所需的缓慢而渐进的运动。在质膜上钙通道水平,该区域的兴奋-钙耦合可能受到独特的调节。