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纤毛研究。3. 关于纤毛尖端及纤毛运动“滑动丝”模型的进一步研究。

Studies on cilia. 3. Further studies on the cilium tip and a "sliding filament" model of ciliary motility.

作者信息

Satir P

出版信息

J Cell Biol. 1968 Oct;39(1):77-94. doi: 10.1083/jcb.39.1.77.

Abstract

This study confirms and extends previous work on the lateral cilia of the fresh-water mussel, Elliptio complanatus, in support of a "sliding filament" mechanism of ciliary motility wherein peripheral filaments (microtubules) do not change length during beat (see Satir, 1967). Short sequences of serial sections of tips are examined in control (nonbeating) and activated (metachronal wave) preparations. Several different tip types, functional rather than morphogenetic variants, are demonstrated, but similarly bent cilia have similar tips. The peripheral filaments are composed of two subfibers: a and b. The bent regions of cilia are in the form of circular arcs, and apparent differences in subfiber-b length at the tip are those predicted solely by geometry of the stroke without the necessity of assuming filament contraction. Various subfibers b apparently move with respect to one another during beat, since small systematic variations in relative position can be detected from cilium to cilium. While subfiber-b lengths are uniform throughout, subfiber-a lengths are morphologically different for each filament: 8 and 3 are about 0.8 micro longer than 1, 4 and 5, but each unique length is independent of stroke position or tip type. Subfiber-a does not contract, nor does it move, e.g. slide, with respect to subfiber-b of the same doublet. The central pair of filaments extends to the tip of the cilium where its members fuse. Subunit assembly in ciliary microtubules is evidently precise. This may be of importance in establishing the relationships needed for mechanochemical interactions that produce sliding and beat.

摘要

本研究证实并拓展了先前关于淡水贻贝椭圆丽蚌侧纤毛的研究工作,以支持纤毛运动的“滑动丝”机制,即在摆动过程中周边丝(微管)长度不变(见萨蒂尔,1967年)。在对照(非摆动)和激活(相继波动)标本中检查了纤毛尖端的连续切片短序列。展示了几种不同的尖端类型,它们是功能而非形态发生变体,但弯曲程度相似的纤毛具有相似的尖端。周边丝由两个亚纤维组成:a和b。纤毛的弯曲区域呈圆弧形,尖端亚纤维b长度的明显差异仅由摆动几何形状预测得出,无需假设丝收缩。在摆动过程中,各种亚纤维b显然会相对彼此移动,因为从一根纤毛到另一根纤毛可以检测到相对位置的微小系统性变化。虽然亚纤维b的长度在整个纤毛中是均匀的,但每个丝的亚纤维a长度在形态上是不同的:8和3比1、4和5大约长0.8微米,但每个独特的长度与摆动位置或尖端类型无关。亚纤维a不收缩,也不会相对于同一二联体的亚纤维b移动,例如滑动。中央一对丝延伸到纤毛尖端,其成员在那里融合。纤毛微管中的亚基组装显然是精确的。这对于建立产生滑动和摆动的机械化学相互作用所需的关系可能很重要。

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