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首页> 外文期刊>Developmental dynamics: an official publication of the American Association of Anatomists >Retinoic acid receptor alpha is required for synchronization of spermatogenic cycles and its absence results in progressive breakdown of the spermatogenic process.
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Retinoic acid receptor alpha is required for synchronization of spermatogenic cycles and its absence results in progressive breakdown of the spermatogenic process.

机译:视黄酸受体α是生精周期同步所必需的,而缺乏视黄酸受体α会导致生精过程的逐步破坏。

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摘要

Targeted mutagenesis of the retinoic acid receptor alpha (RARalpha) gene has revealed its essential role in spermatogenesis. Although cells in all stages of spermatogenesis were detected in RARalpha(-/-) testes, there was an increase in degenerating pachytene spermatocytes and a temporary developmental arrest in step 8-9 spermatids in the first wave of spermatogenesis, a delay in the onset of the second wave, and a temporary arrest in preleptotene to leptotene spermatocytes in the first, second, and third waves. A striking aspect of the mutant phenotype was the failure of spermatids to align at the tubular lumen at stage VIII. Furthermore, there were missing or decreased numbers of the predicted cell types in tubules, and they exhibited a profound asynchrony of mixed spermatogenic cell types. In vivo bromodeoxyuridine labeling revealed a significant decrease in germ cell proliferation in both juvenile and adult RARalpha(-/-) testes and confirmed the arrest at step 8-9 spermatids. Retinoid signaling through RARalpha, thus, appears to be critical for establishment of synchronous progression of spermatogenesis and the subsequent establishment of correct cellular associations. Developmental Dynamics 230:754-766, 2004.
机译:维甲酸受体α(RARalpha)基因的定向诱变已揭示其在精子发生中的重要作用。尽管在RARalpha(-/-)睾丸中检测到了处于精子形成各个阶段的细胞,但在第一波精子形成浪潮中,退化的粗线精子细胞增多,并且在步骤8-9的精子细胞中出现了暂时的发育停滞。第二波,并在第一波,第二波和第三波中暂时阻滞前瘦素至瘦素精细胞。突变表型的一个显着方面是在阶段VIII精子不能在管状内腔对齐。此外,肾小管中预测细胞类型的缺失或数量减少,并且它们表现出混合生精细胞类型的深刻异步性。体内溴脱氧尿嘧啶核苷标记显示在幼年和成年RARalpha(-/-)睾丸中生殖细胞的增殖显着减少,并确认在步骤8-9精子细胞中被捕。因此,通过RARalpha的类维生素A信号传导似乎对于精子发生同步进展的建立以及随后正确的细胞缔合的建立至关重要。发展动力学230:754-766,2004年。

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