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转录组分析在有袋动物性腺发育中的 MAP3K1 和 MAP3K4

Transcriptomic Analysis of MAP3K1 and MAP3K4 in the Developing Marsupial Gonad.

出版信息

Sex Dev. 2019;13(4):195-204. doi: 10.1159/000505799. Epub 2020 Feb 1.

Abstract

MAPKs affect gonadal differentiation in mice and humans, but whether this applies to all mammals is as yet unknown. Thus, we investigated MAPK expression during gonadal differentiation and after treatment with oestrogen in a distantly related mammal, the marsupial tammar wallaby, using our model of oestrogen-induced gonadal sex reversal. High-throughput RNA-sequencing was carried out on gonads collected from developing tammar 2 days before birth to 8 days after birth to characterise MAPK and key sexual differentiation markers. Day 25 foetal testes were cultured for 120 h in control medium or medium supplemented with exogenous oestrogen and processed for RNA-seq to identify changes in gene expression in response to oestrogen. MAPK pathway genes in the tammar were highly conserved at the sequence and amino acid level with those of mice and humans. Marsupial MAP3K1 and MAP3K4 clustered together in a separate branch from eutherian mammals. There was a marked decrease in the expression of male-determining genes SOX9 and AMH and increase in the female marker FOXL2 in oestrogen-treated male gonads. Only MAP3K1 expression increased in male gonads in response to oestrogen while other MAPK genes remained unaffected. This study suggests that MAP3K1 can be influenced by exogenous oestrogens during gonadal differentiation in this marsupial.

摘要

MAPKs 影响小鼠和人类的性腺分化,但这是否适用于所有哺乳动物尚不清楚。因此,我们使用雌激素诱导的性腺性别反转模型,在亲缘关系较远的有袋动物——塔马尔短尾袋鼠中,研究了 MAPK 在性腺分化过程中的表达以及雌激素处理后的表达。在从出生前 2 天到出生后 8 天的发育中的塔马尔的性腺中进行了高通量 RNA 测序,以描述 MAPK 和关键性别分化标记物。将 25 天大的胎儿睾丸在对照培养基或添加外源性雌激素的培养基中培养 120 小时,并进行 RNA-seq 处理,以鉴定雌激素对基因表达的影响。塔马尔的 MAPK 途径基因在序列和氨基酸水平上与小鼠和人类高度保守。有袋动物的 MAP3K1 和 MAP3K4 与真兽类哺乳动物一起聚类在一个单独的分支中。在雌激素处理的雄性性腺中,雄性决定基因 SOX9 和 AMH 的表达明显降低,而雌性标记物 FOXL2 的表达增加。只有 MAP3K1 的表达在雄性性腺中对雌激素有反应而其他 MAPK 基因不受影响。这项研究表明,在这种有袋动物的性腺分化过程中,MAP3K1 可能受到外源性雌激素的影响。

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