Tsutsui I, Inoue I, Bone Q, Carré C
National Institute for Physiological Science, Okazaki, Japan.
J Muscle Res Cell Motil. 2000 Jan;21(1):91-7. doi: 10.1023/a:1005627918789.
Chaetognath muscle fibres resemble vertebrate muscle fibres in having an abundant sarcoplasmic reticulum (SR) and analogues of the transverse (T) tubular system. but contraction is regulated differently. In intact chaetognaths electrically-evoked contractions of the striated locomotor muscles were largely or totally blocked by d-tubocurarine, by surgical removal of the ventral ganglion and by Co2 +. Contractions of single cells enzymatically dissociated from locomotor muscles were likewise blocked by Co2+, they twitched once only after calciseptine, showed neither contractures nor elevated intracellular Ca2+ with caffeine, and ryanodine did not block contractions. Whole cell voltage-clamped locomotor muscle cells displayed a typical inward rectified Ca2 + current that was sensitive to the Ca2+ channel blockers nifedipine and calciseptine and showed voltage-dependent activation with a threshold at approximately-25 mV and a peak inward current at approximately + 10 mV. In contrast, whole cell voltage-clamped cells from the muscles operating the grasping spines of the head showed an initial very rapid and rapidly-inactivating inward current abolished by tetrodotoxin (TTX), followed by a slower and slowly-inactivating inward current blocked by calciseptine. The relation between these observations and the unusual 'vertebrate-like' structure of the muscle cells is discussed.
箭虫的肌纤维在具有丰富的肌浆网(SR)和类似横管(T)系统方面类似于脊椎动物的肌纤维。但收缩的调节方式不同。在完整的箭虫中,横纹运动肌的电诱发收缩在很大程度上或完全被d -筒箭毒碱、通过手术切除腹神经节以及通过Co2 +所阻断。从运动肌中酶解分离出的单个细胞的收缩同样被Co2 +所阻断,它们在接触钙敏肽后仅抽搐一次,对咖啡因既不表现挛缩也不表现细胞内Ca2 +升高,并且兰尼碱不阻断收缩。全细胞电压钳制的运动肌细胞显示出典型的内向整流Ca2 +电流,该电流对Ca2 +通道阻滞剂硝苯地平和钙敏肽敏感,并表现出电压依赖性激活,阈值约为 - 25 mV,内向电流峰值约为 + 10 mV。相比之下,全细胞电压钳制的来自操作头部抓握棘的肌肉的细胞显示出最初非常快速且快速失活的内向电流,该电流被河豚毒素(TTX)消除,随后是被钙敏肽阻断的较慢且缓慢失活的内向电流。讨论了这些观察结果与肌细胞不寻常的“类脊椎动物”结构之间的关系。