Williams J A, Wolff J
J Cell Biol. 1972 Jul;54(1):157-65. doi: 10.1083/jcb.54.1.157.
The role of microtubules in the thyrotropin- or adenosine 3',5' cyclic monophosphate (cyclic AMP)-stimulated accumulation of cytoplasmic colloid droplets and secretion of iodine from the mouse thyroid gland has been investigated by means of different classes of agents that affect the stability of microtubules. The onset of inhibition of secretion by colchicine, the uptake of colchicine-(3)H by thyroid lobes, and the binding of colchicine-(3)H to thyroidal soluble protein are shown to have similar time courses Colloid droplet accumulation is also inhibited and does not readily resume upon removal of colchicine from the medium. This appears to be due to the slow washout of the drug (t((1/2)) approximately hr). Thyroids contain a soluble colchicine-binding protein that resembles microtubule proteins of other tissues with respect to apparent K(m) for colchicine, pH optimum, and stability characteristics Colchicine analogues inhibit iodine secretion and colchicine binding in a parallel manner and as a function of their antimitotic potencies. Microtubule-stabilizing agents such as hexylene glycol and D(2)O also inhibit secretion. Thus, inhibition of thyroid secretion by antimitotic agents appears to be mediated by an effect on microtubules. The inhibitory locus of colchicine inhibition occurs after the generation of cyclic AMP, since stimulation of secretion by this nucleotide is blocked by colchicine, whereas thyroid-stimulating hormone-induced accumulation of cyclic AMP is not affected. Thus, the functioning microtubule appears to play a role in the induction of colloid endocytosis.
通过使用不同类型的影响微管稳定性的试剂,研究了微管在促甲状腺素或腺苷3',5'-环磷酸(环磷腺苷)刺激下小鼠甲状腺细胞质胶体滴积累和碘分泌中的作用。秋水仙碱对分泌的抑制开始时间、甲状腺叶对秋水仙碱-(3)H的摄取以及秋水仙碱-(3)H与甲状腺可溶性蛋白的结合显示出相似的时间进程。胶体滴积累也受到抑制,并且在从培养基中去除秋水仙碱后不容易恢复。这似乎是由于药物的缓慢洗脱(t(1/2)约为小时)。甲状腺含有一种可溶性秋水仙碱结合蛋白,就秋水仙碱的表观K(m)、最适pH和稳定性特征而言,它类似于其他组织的微管蛋白。秋水仙碱类似物以平行方式并根据其抗有丝分裂效力抑制碘分泌和秋水仙碱结合。微管稳定剂如己二醇和重水也抑制分泌。因此,抗有丝分裂剂对甲状腺分泌的抑制似乎是由对微管的作用介导的。秋水仙碱抑制的作用位点发生在环磷腺苷产生之后,因为该核苷酸对分泌的刺激被秋水仙碱阻断,而促甲状腺激素诱导的环磷腺苷积累不受影响。因此,功能正常的微管似乎在胶体胞吞作用的诱导中起作用。