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首页> 外文期刊>Molecular and Cellular Endocrinology >Characterization of the porcine Lhx3/LIM-3/P-Lim LIM homeodomain transcription factor.
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Characterization of the porcine Lhx3/LIM-3/P-Lim LIM homeodomain transcription factor.

机译:猪Lhx3 / LIM-3 / P-Lim LIM同源域转录因子的表征。

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摘要

Lhx3/LIM-3/P-Lim is a LIM homeodomain transcription factor which is essential in mice for the development of anterior and intermediate lobes of the pituitary gland. We report the cloning and characterization of porcine Lhx3. The porcine Lhx3 protein exhibits strong similarity to murine Lhx3 within the amino terminal LIM domains and the homeodomain, however, it is diverged in regions outside these motifs. Expression vectors for porcine Lhx3 activated murine and porcine alpha-glycoprotein reporter genes in transfection assays, and recombinant porcine Lhx3 protein specifically bound to a target site within the porcine alpha-glycoprotein gene upstream sequence. In addition, porcine Lhx3 synergistically induced transcription from prolactin enhancer/promoter reporter genes in cooperation with the Pit-1 pituitary transcription factor. Porcine Lhx3 protein interacted with Pit-1 protein in solution and also with the LIM domain-binding protein NLI/Lbd1/CLIM. Together, these data indicate that many aspects of Lhx3 function in the mammalian pituitary are conserved and that Lhx3 may be involved in the activation of trophic hormone genes during early and late stages of pituitary organogenesis. Divergence in the Lhx3 amino acid sequence between mammalian species may suggest distinct activities for this protein in some species and may help identify important functional domains of this key developmental transcription factor.
机译:Lhx3 / LIM-3 / P-Lim是LIM同源域转录因子,在小鼠中对于垂体前叶和中间叶的发育至关重要。我们报告了猪Lhx3的克隆和鉴定。猪的Lhx3蛋白在氨基末端LIM结构域和同源结构域中与鼠类Lhx3具有很强的相似性,但是在这些基序之外的区域内却存在差异。在转染测定中,猪Lhx3激活了鼠和猪α-糖蛋白报道基因的表达载体,以及重组猪Lhx3蛋白与猪α-糖蛋白基因上游序列中的靶位点特异性结合。另外,猪Lhx3与Pit-1垂体转录因子协同诱导催乳素增强子/启动子报告基因的转录。猪Lhx3蛋白与溶液中的Pit-1蛋白相互作用,并且还与LIM域结合蛋白NLI / Lbd1 / CLIM相互作用。总之,这些数据表明在哺乳动物垂体中Lhx3功能的许多方面均得到了保护,并且在垂体器官发生的早期和晚期,Lhx3可能参与了营养激素基因的激活。在哺乳动物物种之间,Lhx3氨基酸序列的差异可能表明该蛋白在某些物种中具有独特的活性,并可能有助于鉴定该关键发育转录因子的重要功能域。

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