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首页> 外文期刊>Development >Potency of testicular somatic environment to support spermatogenesis in XX/Sry transgenic male mice.
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Potency of testicular somatic environment to support spermatogenesis in XX/Sry transgenic male mice.

机译:XX / Sry转基因雄性小鼠睾丸体细胞环境支持精子发生的能力。

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摘要

The sex-determining region of Chr Y (Sry) gene is sufficient to induce testis formation and the subsequent male development of internal and external genitalia in chromosomally female mice and humans. In XX sex-reversed males, such as XX/Sry-transgenic (XX/Sry) mice, however, testicular germ cells always disappear soon after birth because of germ cell-autonomous defects. Therefore, it remains unclear whether or not Sry alone is sufficient to induce a fully functional testicular soma capable of supporting complete spermatogenesis in the XX body. Here, we demonstrate that the testicular somatic environment of XX/Sry males is defective in supporting the later phases of spermatogenesis. Spermatogonial transplantation analyses using XX/Sry male mice revealed that donor XY spermatogonia are capable of proliferating, of entering meiosis and of differentiating to the round-spermatid stage. XY-donor-derived round spermatids, however, were frequently detached from the XX/Sry seminiferous epithelia and underwent cell death, resulting in severe deficiency of elongated spermatid stages. By contrast, immature XY seminiferous tubule segments transplanted under XX/Sry testis capsules clearly displayed proper differentiation into elongated spermatids in the transplanted XY-donor tubules. Microarray analysis of seminiferous tubules isolated from XX/Sry testes confirmed the missing expression of several Y-linked genes and the alterations in the expression profile of genes associated with spermiogenesis. Therefore, our findings indicate dysfunction of the somatic tubule components, probably Sertoli cells, of XX/Sry testes, highlighting the idea that Sry alone is insufficient to induce a fully functional Sertoli cell in XX mice.
机译:Chr Y(Sry)基因的性别决定区域足以在染色体雌性小鼠和人类中诱导睾丸形成以及随后的内部和外部生殖器的雄性发育。但是,在XX性别相反的雄性中,例如XX / Sry转基因(XX / Sry)小鼠,睾丸生殖细胞总是在出生后不久就因生殖细胞自主缺陷而消失。因此,尚不清楚单独使用Sry是否足以诱导能够支持XX体内完全精子发生的功能齐全的睾丸体。在这里,我们证明XX / Sry男性的睾丸体细胞环境在支持精子发生的后期阶段是有缺陷的。使用XX / Sry雄性小鼠的精原细胞移植分析显示,供体XY精原细胞能够增殖,进入减数分裂并分化为圆形精子细胞。但是,来自XY供体的圆形精子通常会与XX / Sry生精上皮脱离,并发生细胞死亡,从而导致精子延长阶段严重不足。相比之下,在XX / Sry睾丸胶囊下移植的未成熟的XY精小管节段清楚地显示了在已移植的XY供体小管中适当分化成细长的精子。从XX / Sry睾丸分离出的曲细精管的微阵列分析证实了一些Y连锁基因的缺失表达以及与精子发生有关的基因表达谱的改变。因此,我们的发现表明XX / Sry睾丸的体小管成分(可能是Sertoli细胞)功能异常,突显了单独的Sry不足以在XX小鼠中诱导功能齐全的Sertoli细胞的想法。

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