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Characterization of all human male synaptonemal complexes by subtelomere multiplex-FISH

机译:亚端粒多重-FISH表征所有人类男性突触复合物

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During meiotic prophase I, homologous chromosomes synapse and recombine. Both events are of vital importance for the success of meiosis. When homologous chromosomes synapse, a proteinaceous structure called synaptonemal complex (SC) appears along the pairing axis and meiotic recombination takes place. The existence of immunolabeling techniques for SC proteins (SCP1, SCP2 and SCP3) and for DNA mismatch repair proteins present in late recombination nodules (MLH1) allow analyses of both synapsis and meiotic recombination in the gametocyte I. In situ hybridization methods can be applied afterwards because chromatin is preserved during cell fixation for immunoanalysis. The combination of both methodologies allows the analysis of synapsis and the creation of recombination maps for each bivalent. In this work we apply the seven-fluorochrome subtelomere-specific multiplex FISH assay (stM-FISH) to human male meiotic cells previously labeled by immunofluorescence (SCP1, SCP3, MLH1, CENP) to assess its utility for human SC karyotyping. This FISH method consists of microdissected subtelomeric probes labeled combinatorially with seven different fluorochromes. Results prove its usefulness for the identification of all human SCs. Furthermore, by labeling subtelomeric regions this one-single-step method enables the characterization of interstitial and terminal SC fragments and SC delineation even if superposition is present in pachytene spreads.
机译:在减数分裂前期I,同源染色体突触和重组。这两个事件对于减数分裂的成功至关重要。当同源染色体突触时,沿配对轴出现称为突触复合物(SC)的蛋白质结构,并发生减数分裂重组。晚期重组结节(MLH1)中存在SC蛋白(SCP1,SCP2和SCP3)和DNA错配修复蛋白的免疫标记技术的存在,使得可以分析配子I中的突触和减数分裂重组。之后可以应用原位杂交方法因为染色质会在细胞固定过程中保留下来用于免疫分析。两种方法的组合允许对每个二价进行突触分析和重组图的创建。在这项工作中,我们对先前用免疫荧光标记的人类雄性减数分裂细胞(SCP1,SCP3,MLH1,CENP)应用了七种荧光染料的亚端粒特异性多重FISH分析(stM-FISH),以评估其在人类SC核型分析中的效用。这种FISH方法由显微切割的亚端粒探针组成,这些探针用七种不同的荧光染料组合标记。结果证明了其对鉴定所有人类SC的有用性。此外,通过标记亚端粒区域,这种单步方法使间质和末端SC片段的特征以及SC描绘成为可能,即使在粗线酱中也存在叠加。

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