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海胆精子鞭毛分离的和原位的外动力蛋白臂的亚结构

The substructure of isolated and in situ outer dynein arms of sea urchin sperm flagella.

作者信息

Sale W S, Goodenough U W, Heuser J E

出版信息

J Cell Biol. 1985 Oct;101(4):1400-12. doi: 10.1083/jcb.101.4.1400.

Abstract

Outer-arm dynein from the sperm of the sea urchin S. purpuratus was adsorbed to mica flakes and visualized by the quick-freeze, deep-etch technique. Replicas reveal particles comprised of two globular heads joined by two irregularly shaped stems which make contact along their length. One head is pear-shaped (18.5 X 12.5 nm) and the other is spherical (14.5-nm diam). The stems are decorated by a complex of bead-like subunits. The same two-headed protein is found in the 21S dynein-1 fraction of sucrose gradients. The beta-heavy chain/intermediate chain 1 (beta/IC-1) dynein subfraction, produced by low-salt dialysis and zonal centrifugation of the high-salt-extracted dynein-1, contains only single-headed molecules with single stems. These heads are predominantly pear-shaped (18.5 X 12.5 nm). Since 21S dynein-1 contains two heavy chains (alpha and beta), and the beta/IC-1 subfraction is comprised of only the beta-heavy chain (Tang et al., 1982, J. Biol. Chem. 257: 508-515), we conclude that each head is formed by a heavy chain, that the pear-shaped head contains the beta-heavy chain, and that the spherical head contains the alpha-heavy chain. The in situ outer dynein arms of demembranated sperm were also studied by the quick-freeze, deep-etch method. When frozen in reactivation buffer devoid of ATP, each arm consists of a large globular head that attaches to the A-microtubule by distally skewed subunits and attaches to the B-microtubule by a slender stalk. In ATP, this head shifts its orientation such that it can be seen to be constructed from two globular domains. We offer possible correlates between the in situ and the in vitro images, and we compare the structure of sea-urchin dynein with dynein previously described from Chlamydomonas and Tetrahymena.

摘要

将海胆紫球海胆精子的外臂动力蛋白吸附到云母片上,并用快速冷冻、深度蚀刻技术进行观察。复制品显示颗粒由两个球形头部通过两个不规则形状的茎连接而成,这些茎在其长度上相互接触。一个头部呈梨形(18.5×12.5纳米),另一个是球形(直径14.5纳米)。茎上装饰着一串珠子状亚基复合物。在蔗糖梯度的21S动力蛋白-1组分中发现了相同的双头蛋白。通过对高盐提取的动力蛋白-1进行低盐透析和区带离心产生的β重链/中间链1(β/IC-1)动力蛋白亚组分仅包含单头分子和单茎。这些头部主要呈梨形(18.5×12.5纳米)。由于21S动力蛋白-1包含两条重链(α和β),而β/IC-1亚组分仅由β重链组成(唐等人,1982年,《生物化学杂志》257:508 - 515),我们得出结论,每个头部由一条重链形成,梨形头部包含β重链,球形头部包含α重链。还通过快速冷冻、深度蚀刻方法研究了去膜精子原位的外动力蛋白臂。当在不含ATP的再激活缓冲液中冷冻时,每个臂由一个大的球形头部组成,该头部通过向远端倾斜的亚基附着在A微管上,并通过一个细长的柄附着在B微管上。在ATP存在的情况下,这个头部会改变其方向,从而可以看到它是由两个球形结构域构成的。我们提供了原位和体外图像之间可能的关联,并将海胆动力蛋白的结构与先前描述的衣藻和四膜虫的动力蛋白进行了比较。

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