首页> 外文期刊>Genes and Development: a Journal Devoted to the Molecular Analysis of Gene Expression in Eukaryotes, Prokaryotes, and Viruses >Autocrine prolactin induced by the Pten-Akt pathway is required for lactation initiation and provides a direct link between the Akt and Stat5 pathways
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Autocrine prolactin induced by the Pten-Akt pathway is required for lactation initiation and provides a direct link between the Akt and Stat5 pathways

机译:Pten-Akt途径诱导的自分泌催乳素是泌乳开始所需的,并提供Akt和Stat5途径之间的直接联系

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Extrapituitary prolactin (Prl) is produced in humans and rodents; however, little is known about its in vivo regulation or physiological function. We now report that autocrine prolactin is required for terminal mammary epithelial differentiation during pregnancy and that its production is regulated by the Pten-PI3K-Akt pathway. Conditional activation of the PI3K-Akt pathway in the mammary glands of virgin mice by either Akt1 expression or Pten deletion rapidly induced terminal mammary epithelial differentiation accompanied by the synthesis of milk despite the absence of lobuloalveolar development. Surprisingly, we found that mammary differentiation was due to the PI3K-Akt-dependent synthesis and secretion of autocrine prolactin and downstream activation of the prolactin receptor (Prlr)-Jak-Stat5 pathway. Consistent with this, Akt-induced mammary differentiation was abrogated in Prl -/-, Prlr -/-, and Stat5 -/- mice. Furthermore, cells treated with conditioned medium from mammary glands in which Akt had been activated underwent rapid Stat5 phosphorylation in a manner that was blocked by inhibition of Jak2, treatment with an anti-Prl antibody, or deletion of the prolactin gene. Demonstrating a physiological requirement for autocrine prolactin, mammary glands from lactation-defective Akt1 -/-;Akt2 +/- mice failed to express autocrine prolactin or activate Stat5 during late pregnancy despite normal levels of circulating serum prolactin and pituitary prolactin production. Our findings reveal that PI3K-Akt pathway activation is necessary and sufficient to induce autocrine prolactin production in the mammary gland, Stat5 activation, and terminal mammary epithelial differentiation, even in the absence of the normal developmental program that prepares the mammary gland for lactation. Together, these findings identify a function for autocrine prolactin during normal development and demonstrate its endogenous regulation by the PI3K-Akt pathway.
机译:垂体催乳素(Prl)是在人类和啮齿动物中产生的。然而,对其体内调节或生理功能知之甚少。我们现在报告,妊娠期末乳腺上皮分化需要自分泌催乳素,其产生受Pten-PI3K-Akt途径调控。尽管缺乏肺泡发展,但通过Akt1表达或Pten缺失,有条件地激活处女小鼠乳腺中PI3K-Akt途径的激活,迅速诱导了终末期乳腺上皮细胞的分化并伴随着牛奶的合成。令人惊讶地,我们发现乳腺分化是由于PI3K-Akt依赖的自分泌催乳素的合成和分泌以及催乳素受体(Prlr)-Jak-Stat5途径的下游激活。与此相一致,在Prl-/-,Prlr-/-和Stat5-/-小鼠中,Akt诱导的乳腺分化被消除。此外,用来自已经激活了Akt的乳腺的条件培养基处理的细胞,以抑制Jak2,用抗Pr1抗体处理或删除催乳素基因而被阻断的方式,进行了快速的Stat5磷酸化。泌乳缺陷型Akt1-/-; Akt2 +/-小鼠的乳腺显示出自分泌催乳素的生理学要求,尽管循环血清催乳素和垂体催乳素水平正常,但在妊娠晚期无法表达自分泌催乳素或激活Stat5。我们的发现表明,即使没有正常的发育程序来为泌乳做准备,PI3K-Akt途径的激活对于诱导乳腺中自分泌催乳素的产生,Stat5激活和终末乳腺上皮细胞的分化是必要且充分的。这些发现共同确定了正常发育过程中自分泌催乳激素的功能,并证明了其通过PI3K-Akt途径的内源调节。

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