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首页> 外文期刊>Endocrinology >Opposite effects of interleukin-1alpha and transforming growth factor-beta2 induce stage-specific regulation of junctional adhesion molecule-B gene in Sertoli cells.
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Opposite effects of interleukin-1alpha and transforming growth factor-beta2 induce stage-specific regulation of junctional adhesion molecule-B gene in Sertoli cells.

机译:白介素-1α和转化生长因子-β2的相反作用诱导支持细胞中阶段性的连接黏附分子B基因的特定调节。

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In the mammalian testis, junctional adhesion molecule-B (JAM-B) is found at the blood-testis barrier between Sertoli cells and the apical ectoplasmic specializations between Sertoli and germ cells. The expression of JAM-B is tightly regulated to allow the transit of developing germ cells across the blood-testis barrier and the timely release of mature spermatids at stage VIII. In this study, the basal transcription of JAM-B in the mouse Sertoli cell line, MSC-1 cells, was examined. We found that the constitutive expression of JAM-B is carried out by the binding of specificity proteins (Sps), ETS domain transcription factor Elk-1 (Elk1), neuron-restrictive silencer factor (NRSF), and E2F transcription factor 3 (E2F3) to various cis-acting elements including TG interacting factor (TGIF), Elk-1, NRSF, and proximal Sp1 (pSp1) + E2F binding motifs. We also investigated the effects of two cytokines IL-1alpha and TGF-beta2 on JAM-B expression. IL-1alpha promotes JAM-B expression by facilitating the binding of Elk-1 to TGIF and pSp1 + E2F motifs in a p38-dependent manner, which leads to an additive effect on Sp1- and NRSF-mediated JAM-B transactivation. TGF-beta2 inhibits JAM-B transcription via the activation of mothers against decapentaplegic (Smad) proteins and activated Smads compete with specificity proteins (Sp1 and Sp3) for the TGIF motif, resulting in JAM-B repression. IL-1alpha and Smad3 expression have been reported to be stage specific. IL-1alpha is absent in the seminferous epithelium at stages VII-VIII, whereas a high level of nuclear Smad3 level is found at the same stages. This study shows for the first time that IL-1alpha and TGF-beta2 regulate JAM-B expression in an opposite manner, and in vitro data obtained herein provide some clues on how junctions are regulated in the testis.
机译:在哺乳动物的睾丸中,在Sertoli细胞之间的血液-睾丸屏障以及Sertoli和生殖细胞之间的根尖特化专长处发现了连接黏附分子-B(JAM-B)。严格调节JAM-B的表达,以使发育中的生殖细胞通过血睾丸屏障,并在VIII期及时释放成熟的精子。在这项研究中,检查了小鼠Sertoli细胞系MSC-1细胞中JAM-B的基础转录。我们发现JAM-B的组成型表达是通过结合特异性蛋白(Sps),ETS域转录因子Elk-1(Elk1),神经元限制性沉默因子(NRSF)和E2F转录因子3(E2F3)来进行的),包括TG相互作用因子(TGIF),Elk-1,NRSF和近端Sp1(pSp1)+ E2F结合基序。我们还研究了两种细胞因子IL-1alpha和TGF-beta2对JAM-B表达的影响。 IL-1alpha通过以p38依赖的方式促进Elk-1与TGIF和pSp1 + E2F基序的结合来促进JAM-B表达,从而导致对Sp1-和NRSF介导的JAM-B反式激活的累加效应。 TGF-beta2通过母亲针对十足瘫痪(Smad)蛋白质的激活来抑制JAM-B转录,并且激活的Smads与特异性蛋白质(Sp1和Sp3)竞争TGIF基序,从而导致JAM-B抑制。据报道IL-1α和Smad3表达是阶段特异性的。 VII-VIII阶段的半透明上皮中不存在IL-1alpha,而在相同阶段发现了高水平的Smad3核水平。这项研究首次表明,IL-1α和TGF-β2以相反的方式调节JAM-B表达,本文获得的体外数据提供了一些有关睾丸中接头如何调节的线索。

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