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The Rad9 Gene of Coprinus Cinereus Encodes a Proline-Rich Protein Required for Meiotic Chromosome Condensation and Synapsis

机译:鸡腿菇的Rad9基因编码减数分裂染色体凝聚和突触所需的富含脯氨酸的蛋白质。

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摘要

The rad9 gene of Coprinus cinereus is essential for the normal completion of meiosis. We examined surface-spread preparations of wild-type and rad9-1 nuclei from the meiotic stages of karyogamy through metaphase I, and we determined the primary sequence, structure, and meiotic expression of the rad9 gene. In wild-type C. cinereus, karyogamy is followed by condensation and alignment of homologous chromosomes. Condensation and axial core development largely precede synapsis, which often initiates at telomeres. A diffuse diplotene phase coincides with dissolution of the synaptonemal complex, and subsequently chromosomes further condense as the cells progress into metaphase I. In contrast, although karyogamy and nucleolar fusion are apparently normal in rad9-1 basidia, only short stretches of synaptonemal complex form. These correlate with stretches of condensed chromatin, mostly at apparent chromosome ends, and regions of presumptive triple synapsis are numerous. rad9-1 basidia enter the diffuse stage of early diplotene, and then 50% of these cells enter metaphase I by the criteria of nucleolar elimination and at least some chromatin condensation. rad9 gene expression is induced after gamma irradiation and during meiosis. The gene has 27 exons and encodes a predicted protein of 2157 amino acids, with a proline-rich amino terminus.
机译:灰尾鬼伞的rad9基因对于减数分裂的正常完成是必不可少的。我们检查了核型的减数分裂阶段到中期I的野生型和rad9-1核的表面扩散制剂,并确定了rad9基因的主要序列,结构和减数分裂表达。在野生型灰葡萄孢中,核型被紧缩和比对同源染色体。凝聚和轴向核心发育主要发生在突触之前,突触通常始于端粒。弥散的二萜烯相与突触复合物的溶解相吻合,随后染色体进一步凝结,随着细胞进入中期I。相反,尽管核型和核仁融合在rad9-1基底上显然是正常的,但突触复合物形式只有一小段。这些与浓缩的染色质的延伸相关,主要在明显的染色体末端,并且推测的三突触区域很多。 rad9-1基底细胞进入早期双戊烯的扩散阶段,然后按照核仁消除和至少某些染色质凝聚的标准,这些细胞中有50%进入中期I。 rad9基因表达在γ射线照射后和减数分裂过程中被诱导。该基因有27个外显子,编码2157个氨基酸的预测蛋白,并带有富含脯氨酸的氨基末端。

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