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海蚯蚓精子的顶体反应。I. 高分辨率视频显微镜观察到的精子头部变化。

Acrosomal reaction of thyone sperm. I. Changes in the sperm head visualized by high resolution video microscopy.

作者信息

Inoué S, Tilney L G

出版信息

J Cell Biol. 1982 Jun;93(3):812-9. doi: 10.1083/jcb.93.3.812.

Abstract

Structural changes inside the head of Thyone sperm undergoing the acrosomal reaction were followed with a high-resolution, differential interference contrast (DIC) video microscope. The beating sperm, adhering by their midpiece to the cover slip of a wedge perfusion chamber, were activated by a calcium ionophore (20 microM A23187) suspended in sea water containing 50 mM excess CaCl2. Before activation of the sperm, the acrosomal region appears as a 1.1-microM diameter sphere, slightly less dense than the rest of the sperm head. Upon activation, the acrosome pops; the acrosomal region suddenly swells and its refractive index drops. After approximately 1 s, a crescent-shaped periacrosomal cup appears behind the acrosomal vacuole. In the next several seconds, the cup loses more refractive index and expands forward as the acrosomal process extends. The acrosomal vacuole becomes smaller, but without appreciable drop in refractive index. These observations, coupled with the behavior of the extending acrosomal process reported in the companion paper, and in electron microscopy (EM) and early physiological studies, suggest that the acrosomal process is extended by a combination of the explosive polymerization of actin and the osmotic swelling of the periacrosomal cup material. In this paper, we also consider the meaning of the enhanced DIC image seen in the high-resolution video microscope, and discuss the reliability of measurements on small linear dimensions made with the DIC microscope.

摘要

利用高分辨率微分干涉相差(DIC)视频显微镜跟踪正在经历顶体反应的海棒槌精子头部内部的结构变化。跳动的精子通过其线粒体中部附着在楔形灌注室的盖玻片上,由悬浮在含有50 mM过量氯化钙的海水中的钙离子载体(20 microM A23187)激活。在精子激活之前,顶体区域呈现为直径1.1微米的球体,密度略低于精子头部的其余部分。激活后,顶体爆开;顶体区域突然肿胀,其折射率下降。大约1秒后,顶体空泡后方出现新月形的顶体周杯。在接下来的几秒钟内,随着顶体突起的延伸,顶体周杯的折射率进一步降低并向前扩展。顶体空泡变小,但折射率没有明显下降。这些观察结果,结合在配套论文中报道的顶体突起的行为,以及在电子显微镜(EM)和早期生理学研究中的结果,表明顶体突起是由肌动蛋白的爆发性聚合和顶体周杯物质的渗透性肿胀共同作用而延伸的。在本文中,我们还考虑了在高分辨率视频显微镜中看到的增强DIC图像的意义,并讨论了用DIC显微镜对小线性尺寸进行测量的可靠性。

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