Chalfie M, Thomson J N
J Cell Biol. 1982 Apr;93(1):15-23. doi: 10.1083/jcb.93.1.15.
Tannic acid fixation reveals differences in the number of protofilaments between microtubules (MTs) in the nematode Caenorhabditis elegans. Most cells have MTs with 11 protofilaments but the six touch receptor neurons (the microtubule cells) have MTs with 15 protofilaments. No 13-protofilament (13-p) MT has been seen. The modified cilia of sensory neurons also possess unusual structures. The cilia contain nine outer doublets with A subfibers of 13 protofilaments and B subfibers of 11 protofilaments and a variable number of inner singlet MTs containing 11 protofilaments. The 15-p MTs but not the 11-p MTs are eliminated by colchicine-treatment or by mutation of the gene mec-7. Concomitantly, touch sensitivity is also lost. However, whereas colchicine treatment leads to the loss of all MTs from the microtubule cells, mutations in mec-7 result in the partial replacement of the 15-p MTs with 11-p MTs. Benzimidazoles (benomyl and nocodazole) have more general effects on C. elegans (slow growth, severe uncoordination, and loss of processes from the ventral cord) but do not affect the 15-p MTs. Benomyl will, however, disrupt the replacement 11-p MTs found in the microtubule cells of mec-7 mutants. The 11-p and 15-p MTs also respond differently to temperature and fixation conditions. It is likely that either type of MT will suffice for the proper outgrowth of the microtubule cell process, but only the 15-p MT can function in the specialized role of sensory transduction of the microtubule cells.
单宁酸固定法揭示了线虫秀丽隐杆线虫微管(MTs)中原纤维数量的差异。大多数细胞中的微管有11根原纤维,但6个触觉感受器神经元(微管细胞)中的微管有15根原纤维。尚未观察到有13根原纤维(13-p)的微管。感觉神经元的修饰纤毛也具有不同寻常的结构。纤毛包含9对外周双联体,其中A亚纤维有13根原纤维,B亚纤维有11根原纤维,还有数量可变的含11根原纤维的内侧单微管。秋水仙碱处理或mec-7基因突变会消除15-p微管,而不是11-p微管。与此同时,触觉敏感性也会丧失。然而,秋水仙碱处理会导致微管细胞中的所有微管消失,而mec-7基因突变会导致15-p微管部分被11-p微管所取代。苯并咪唑类药物(苯菌灵和诺考达唑)对秀丽隐杆线虫有更广泛的影响(生长缓慢、严重不协调以及腹神经索的突起丧失),但不影响15-p微管。不过,苯菌灵会破坏mec-7突变体微管细胞中出现的替代11-p微管。11-p和15-p微管对温度和固定条件的反应也不同。两种类型的微管可能都足以使微管细胞突起正常生长,但只有15-p微管能在微管细胞的特殊感觉转导作用中发挥功能。