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缺乏 SPAG16L 的小鼠精子鞭毛功能缺陷且对钙的反应降低。

Functional deficiencies and a reduced response to calcium in the flagellum of mouse sperm lacking SPAG16L.

机构信息

Department of Biological Sciences, Oakland University, Rochester, Michigan, USA.

出版信息

Biol Reprod. 2010 Apr;82(4):736-44. doi: 10.1095/biolreprod.109.080143. Epub 2009 Dec 30.

Abstract

The Spag16L gene codes for a protein that is localized to the central apparatus which is essential for normal sperm motility and male fertility. Sperm from mice homozygous for a targeted deletion of the Spag16L gene were examined to assess their flagellar motor functions compared with age- and strain-matched control sperm. Sperm were also demembranated with Triton X-100 and examined for their ability to respond to free calcium, as well as for their ability to undergo microtubule sliding driven by dynein action. In addition, the passive flagella, inhibited by sodium metavanadate to disable the dyneins, were examined for mechanical abnormalities. Live Spag16L-null sperm exhibited much less bending of the flagellum during the beat. The amount of microtubule sliding in the R-bend direction of the beat was selectively restricted, which suggests that there is limited activation of the dyneins on one side of the axoneme in the live cells. This is corroborated by the results on detergent-extracted sperm models. The flagellar response to calcium is greatly reduced. The calcium response requires the activation of the dyneins on outer doublets 1, 2, 3, and 4. These are the same dyneins required for R-bend formation. In axonemes prepared to disintegrate by microtubule sliding, we observed little or no extrusion of doublets 1 and 2, consistent with a reduced activity of their dyneins. This deficit in motor function, and an increased rigidity of the midpiece region which we detected in the passive flagella, together can explain the observed motility characteristics of the Spag16L-null sperm.

摘要

Spag16L 基因编码一种定位于中心体的蛋白质,该中心体对于正常精子的运动和雄性生育力是必需的。我们检查了 Spag16L 基因靶向缺失杂合子小鼠的精子,以评估其鞭毛运动功能,并与年龄和品系匹配的对照精子进行比较。我们还用 Triton X-100 去膜化精子,并检查它们对游离钙的反应能力,以及它们在动力蛋白作用下进行微管滑动的能力。此外,还检查了受抑制的被动鞭毛,其抑制方法是用偏钒酸钠抑制动力蛋白,以检查其是否存在机械异常。活的 Spag16L 基因缺失精子在摆动过程中显示出鞭毛弯曲的程度大大降低。摆动的 R 弯微管滑动量受到选择性限制,这表明在活细胞中,轴丝一侧的动力蛋白的激活是有限的。这一结果与去污剂提取的精子模型的结果一致。精子对钙的反应大大降低。钙反应需要激活外二联体 1、2、3 和 4 上的动力蛋白。这些是形成 R 弯所必需的动力蛋白。在由微管滑动引起的轴丝解体的准备中,我们观察到很少或没有二联体 1 和 2 的挤出,这与它们的动力蛋白活性降低一致。这种运动功能缺陷,以及我们在被动鞭毛中检测到的中段区域的刚性增加,可以共同解释 Spag16L 基因缺失精子的观察到的运动特征。

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