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Mutation of a putative sperm membrane protein in Caenorhabditis elegans prevents sperm differentiation but not its associated meiotic divisions

机译:秀丽隐杆线虫的假定的精子膜蛋白突变可阻止精子分化,但不能阻止其相关的减数分裂分裂

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摘要

Spermatogenesis in the nematode Caenorhabditis elegans uses unusual organelles, called the fibrous body-membranous organelle (FB-MO) complexes, to prepackage and deliver macromolecules to spermatids during cytokinesis that accompanies the second meiotic division. Mutations in the spe-4 (spermatogenesis-defective) gene disrupt these organelles and prevent cytokinesis during spermatogenesis, but do not prevent completion of the meiotic nuclear divisions that normally accompany spermatid formation. We report an ultrastructural analysis of spe-4 mutant sperm where the normally close association of the FB's with the MO's and the double layered membrane surrounding the FB's are both defective. The internal membrane structure of the MO's is also disrupted in spe-4 mutant sperm. Although sperm morphogenesis in spe-4 mutants arrests prior to the formation of spermatids, meiosis can apparently be completed so that haploid nuclei reside in an arrested spermatocyte. We have cloned the spe-4 gene in order to understand its role during spermatogenesis and the molecular basis of how mutation of this gene disrupts this process. The spe-4 gene encodes an approximately 1.5-kb mRNA that is expressed during spermatogenesis, and the sequence of this gene suggests that it encodes an integral membrane protein. These data suggest that mutation of an integral membrane protein within FB-MO complexes disrupts morphogenesis and prevents formation of spermatids but does not affect completion of the meiotic nuclear divisions in C. elegans sperm.
机译:线虫秀丽隐杆线虫的精子发生使用异常的细胞器,称为纤维体-膜细胞器(FB-MO)复合物,在第二次减数分裂伴随的胞质分裂过程中,将大分子预包装并传递给精子。 spe-4(精子发生缺陷型)基因中的突变破坏了这些细胞器并阻止了精子发生过程中的胞质分裂,但并不能阻止通常伴随精子形成的减数分裂。我们报告了spe-4突变精子的超微结构分析,其中FB与MO的正常紧密结合以及围绕FB的双层膜都是有缺陷的。 MO的内部膜结构在spe-4突变体精子中也被破坏。尽管spe-4突变体中的精子形态发生在精子形成之前就停止了,但减数分裂显然可以完成,从而使单倍体核驻留在被精子细胞中。我们已经克隆了spe-4基因,以了解其在精子发生过程中的作用以及该基因突变如何破坏此过程的分子基础。 spe-4基因编码在精子发生过程中表达的约1.5 kb mRNA,该基因的序列表明它编码完整的膜蛋白。这些数据表明,FB-MO复合物中整合膜蛋白的突变会破坏形态发生并阻止精子的形成,但不会影响秀丽隐杆线虫精子的减数分裂核分裂的完成。

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  • 年度 1992
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