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Tekt1(一种小鼠tektin C同源物)在精子发生过程中的时空表达表明,它参与精子尾部基体和轴丝的发育。

The spatial and temporal expression of Tekt1, a mouse tektin C homologue, during spermatogenesis suggest that it is involved in the development of the sperm tail basal body and axoneme.

作者信息

Larsson M, Norrander J, Gräslund S, Brundell E, Linck R, Ståhl S, Höög C

机构信息

Department of Biotechnology, Royal Institute of Technology (KTH), Stockholm, Sweden.

出版信息

Eur J Cell Biol. 2000 Oct;79(10):718-25. doi: 10.1078/0171-9335-00097.

Abstract

Tektins comprise a family of filament-forming proteins that are known to be coassembled with tubulins to form ciliary and flagellar microtubules. Recently we described the sequence of the first mammalian tektin protein, Tekt1 (from mouse testis), which is most homologous with sea urchin tektin C. We have now investigated the temporal and spatial expression of Tekt1 during mouse male germ cell development. By in situ hybridization analysis TEKT1 RNA expression is detected in spermatocytes and in round spermatids in the mouse testis. Immunofluorescence microscopy analysis with anti-Tekt1 antibodies showed no distinct labeling of any subcellular structure in spermatocytes, whereas in round spermatids anti-Tekt1 antibodies co-localize with anti-ANA antibodies to the centrosome. At a later stage, elongating spermatids display a larger area of anti-Tektl staining at their caudal ends; as spermiogenesis proceeds, the anti-Tekt1 staining disappears. Together with other evidence, these results provide the first intraspecies evidence that Tekt1 is transiently associated with the centrosome, and indicates that Tekt1 is one of several tektins to participate in the nucleation of the flagellar axoneme of mature spermatozoa, perhaps being required to assemble the basal body.

摘要

微管轴丝蛋白是一类能形成细丝的蛋白质家族,已知它们能与微管蛋白共同组装形成纤毛和鞭毛微管。最近,我们描述了首个哺乳动物微管轴丝蛋白Tekt1(来自小鼠睾丸)的序列,它与海胆微管轴丝蛋白C的同源性最高。我们现在研究了Tekt1在小鼠雄性生殖细胞发育过程中的时空表达。通过原位杂交分析,在小鼠睾丸的精母细胞和圆形精子细胞中检测到TEKT1 RNA表达。用抗Tekt1抗体进行免疫荧光显微镜分析显示,精母细胞中没有任何亚细胞结构有明显标记,而在圆形精子细胞中,抗Tekt1抗体与抗ANA抗体在中心体处共定位。在后期,伸长的精子细胞在其尾端显示出更大面积的抗Tekt1染色;随着精子发生的进行,抗Tekt1染色消失。与其他证据一起,这些结果提供了首个种内证据,表明Tekt1与中心体短暂相关,并表明Tekt1是参与成熟精子鞭毛轴丝成核的几种微管轴丝蛋白之一,可能是组装基体所必需的。

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