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兔气管和输卵管纤毛中的微管滑动

Microtubule sliding in cilia of the rabbit trachea and oviduct.

作者信息

Dirksen E R, Zeira M

出版信息

Cell Motil. 1981;1(2):247-60. doi: 10.1002/cm.970010207.

Abstract

Evidence for active sliding of microtubules during ciliary activity has been demonstrated in a number of organisms: sea urchin sperm flagella, protozoan cilia, and mollusc gill cilia. Although there is evidence that active sliding also occurs in mammalian sperm flagella, there is little or no information on whether active sliding of microtubules also occurs in the short (5-micron) cilia of the mammalian trachea or oviduct. Since these cilia are important in tracheobronchial clearance and ovum transport, respectively, it has been important to demonstrate that microtubule sliding is also involved in the activity of somatic cilia. Ciliated apical portions (cortices) and cilia were isolated from rabbit trachea and oviduct, using Triton X-100 to demembranate the cilia. Most of the ciliated cortices reactivated upon addition of ATP, whereas isolated cilia reactivated to a lesser extent. When preparations of cilia were digested with trypsin before or after ATP addition, disintegration of axonemal doublets occurred with about the same frequency as reactivation. These events were recorded using Nomarski optics and dark-field microscopy. When isolated cilia which had been digested by trypsin and exposed to ATP were also prepared for electron microscopy by negative staining, telescoping of doublet microtubules from axonemes could be shown. These results demonstrate that mammalian somatic ciliary doublet microtubules actively slide in a manner similar to that described for invertebrate cilia.

摘要

在许多生物体中已证实纤毛活动期间微管存在主动滑动的证据

海胆精子鞭毛、原生动物纤毛和软体动物鳃纤毛。虽然有证据表明哺乳动物精子鞭毛中也存在主动滑动,但关于哺乳动物气管或输卵管的短(5微米)纤毛中微管是否也存在主动滑动,几乎没有相关信息。由于这些纤毛分别在气管支气管清除和卵子运输中起重要作用,因此证明微管滑动也参与体细胞纤毛的活动很重要。使用Triton X-100使纤毛去膜,从兔气管和输卵管中分离出纤毛顶端有纤毛的部分(皮层)和纤毛。大多数有纤毛的皮层在添加ATP后重新激活,而分离出的纤毛重新激活的程度较小。当在添加ATP之前或之后用胰蛋白酶消化纤毛制剂时,轴丝双联体的解体与重新激活的频率大致相同。使用相差显微镜和暗视野显微镜记录这些事件。当将经胰蛋白酶消化并暴露于ATP的分离纤毛也通过负染色制备用于电子显微镜观察时,可以显示轴丝双联体微管的套叠。这些结果表明,哺乳动物体细胞纤毛双联体微管以类似于无脊椎动物纤毛的方式进行主动滑动。

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