首页> 外文期刊>Regulatory peptides. >The LIM domain homeobox gene isl-1 is a positive regulator of glycoprotein alpha 2 (GPA2), a subunit of thyrostimulin.
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The LIM domain homeobox gene isl-1 is a positive regulator of glycoprotein alpha 2 (GPA2), a subunit of thyrostimulin.

机译:LIM域同源盒基因isl-1是糖蛋白α2(GPA2)的正调控因子,α2是甲状腺刺激蛋白的亚基。

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Two glycoprotein hormone subunits, glycoprotein hormone subunit alpha (GPA) 2 and glycoprotein hormone subunit beta (GPB) 5, have recently been discovered. When expressed as recombinant proteins, they heterodimerize to form a novel thyrotrophic hormone, thyrostimulin. Recently, we have shown that GPA2 is expressed in both human pancreas and anterior pituitary. To explore the transcriptional regulation of GPA2, we identified from human pancreas full length RNA, the transcription start site (TSS) of the human GPA2 gene. A potential binding site for the LIM homeodomain transcription factor isl-1, which is closely associated with endocrine organs, was found at -2368 to -2363 bp upstream from TSS. The exogenously expressed isl-1 dose-dependently increased the GPA2 promoter activity up to two-fold in the AtT20 mouse corticotroph cell line. In chromatin immunoprecipitation assays we show the binding of isl-1 molecule to the predicted site. The reporter assay also showed that GPA2 transcription is unaffected by tri-iodothyronine or thyroid hormone receptor beta1 (TRbeta1), suggesting that the regulation of GPA2 might be different from the regulations of GSUalpha or TSHbeta, known as hypothalamus-pituitary-thyroid (HPT) axis. This study illustrated that human GPA2 is positively regulated by isl-1, suggesting that this protein associates with endocrine systems including the pituitary and pancreas.
机译:最近发现了两个糖蛋白激素亚基,糖蛋白激素亚基α(GPA)2和糖蛋白激素亚基β(GPB)5。当表达为重组蛋白时,它们异源二聚化形成新的甲状腺营养激素甲状腺刺激蛋白。最近,我们已经表明,GPA2在人类胰腺和垂体前叶中均表达。为了探索GPA2的转录调控,我们从人胰腺全长RNA中鉴定了人GPA2基因的转录起始位点(TSS)。 LIM同源域转录因子isl-1的潜在结合位点与内分泌器官密切相关,位于TSS的-2368至-2363 bp处。在AtT20小鼠皮质营养细胞系中,外源表达的isl-1剂量依赖性地将GPA2启动子活性提高了两倍。在染色质免疫沉淀试验中,我们显示了isl-1分子与预测位点的结合。记者分析还显示,GPA2的转录不受三碘甲状腺氨酸或甲状腺激素受体beta1(TRbeta1)的影响,这表明GPA2的调节可能不同于GSUalpha或TSHbeta的调节,称为下丘脑-垂体-甲状腺(HPT)轴。这项研究表明,人GPA2受到isl-1的正调控,表明该蛋白与包括垂体和胰腺在内的内分泌系统有关。

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