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睾丸内分泌和旁分泌信号对附睾近端转录组的不同作用。

Distinct actions of testicular endocrine and lumicrine signaling on the proximal epididymal transcriptome.

机构信息

Japan Science and Technology Agency, 7, Gobancho, Chiyoda-ku, Tokyo, 102-0076, Japan.

Research Institute of Environmental Medicine, Nagoya University, Furo-cho, Chikusa-ku, Nagoya, 464-8601, Japan.

出版信息

Reprod Biol Endocrinol. 2024 Apr 10;22(1):40. doi: 10.1186/s12958-024-01213-x.

Abstract

The epididymal function and gene expression in mammals are under the control of the testis. Sex steroids are secreted from the testis and act on the epididymis in an endocrine manner. There is another, non-sex steroidal secreted signaling, named lumicrine signaling, in which testis-derived secreted proteins go through the male reproductive tract and act on the epididymis. The effects of such multiple regulations on the epididymis by the testis have been investigated for many genes. The recent development of high-throughput next-generation sequencing now enables us a further comparative survey of endocrine and lumicrine action-dependent gene expression. In the present study, testis-derived endocrine and lumicrine actions on epididymal gene expression were comparatively investigated by RNA-seq transcriptomic analyses. This investigation utilized experimental animal models in which testis-derived endocrine and/or lumicrine actions were interfered with, such as unilateral or bilateral orchidectomy. By bilateral orchidectomy, which interferes with both endocrine and lumicrine actions, 431 genes were downregulated. By unilateral orchidectomy, which also interferes with endocrine and lumicrine actions by the unilateral testis, but the endocrine action was compensated by the contralateral testis, 283 genes were downregulated. The content of such genes downregulated by unilateral orchidectomy was like those of lumicrine action-interfered efferent duct-ligation, W/Wv, and Nell2 mice. When genes affected by unilateral and bilateral orchidectomy were compared, 154 genes were commonly downregulated, whereas 217 genes were specifically downregulated only by bilateral orchidectomy, indicating the distinction between endocrine and lumicrine actions on the proximal epididymal transcriptome. Comparative transcriptome analyses also showed that the expressions of genes emerging since Amniota were notably impacted by bilateral orchidectomy, unilateral orchidectomy, and lumicrine action-interfering treatments; the degree of influence from these treatments varied based on the evolutionary stage beyond Amniota. These findings unveil an evolutional transition of regulated gene expression in the proximal epididymis by two different testis-derived signaling mechanisms.

摘要

哺乳动物的附睾功能和基因表达受睾丸控制。性激素由睾丸分泌,并以内分泌方式作用于附睾。还有一种非甾体分泌的信号,称为亮氨酸信号,其中睾丸衍生的分泌蛋白通过男性生殖道作用于附睾。睾丸对附睾的这种多种调节作用已经在许多基因上进行了研究。高通量下一代测序的最新发展使我们能够进一步比较内分泌和亮氨酸依赖性基因表达的作用。在本研究中,通过 RNA-seq 转录组分析比较研究了睾丸衍生的内分泌和亮氨酸作用对附睾基因表达的影响。该研究利用了实验动物模型,其中干扰了睾丸衍生的内分泌和/或亮氨酸作用,例如单侧或双侧睾丸切除术。通过双侧睾丸切除术,干扰了内分泌和亮氨酸作用,有 431 个基因下调。通过单侧睾丸切除术,也干扰了单侧睾丸的内分泌和亮氨酸作用,但内分泌作用被对侧睾丸代偿,有 283 个基因下调。单侧睾丸切除术下调的基因数量与亮氨酸作用干扰的输出导管结扎、W/Wv 和 Nell2 小鼠相似。当比较单侧和双侧睾丸切除术影响的基因时,有 154 个基因共同下调,而 217 个基因仅由双侧睾丸切除术特异性下调,表明内分泌和亮氨酸作用对附睾近端转录组的区别。比较转录组分析还表明,自羊膜动物以来出现的基因的表达受到双侧睾丸切除术、单侧睾丸切除术和亮氨酸作用干扰治疗的显著影响;这些处理的影响程度根据羊膜动物以外的进化阶段而有所不同。这些发现揭示了两种不同的睾丸衍生信号机制对附睾近端受调控基因表达的进化转变。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a2c6/11005294/0aab61e34c4f/12958_2024_1213_Fig1_HTML.jpg

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