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Hormone-Dependent Expression of a Steroidogenic Acute Regulatory Protein Natural Antisense Transcript in MA-10 Mouse Tumor Leydig Cells

机译:类固醇激素急性调节蛋白天然反义转录物在MA-10小鼠肿瘤Leydig细胞中的激素依赖性表达。

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摘要

Cholesterol transport is essential for many physiological processes, including steroidogenesis. In steroidogenic cells hormone-induced cholesterol transport is controlled by a protein complex that includes steroidogenic acute regulatory protein (StAR). Star is expressed as 3.5-, 2.8-, and 1.6-kb transcripts that differ only in their 3′-untranslated regions. Because these transcripts share the same promoter, mRNA stability may be involved in their differential regulation and expression. Recently, the identification of natural antisense transcripts (NATs) has added another level of regulation to eukaryotic gene expression. Here we identified a new NAT that is complementary to the spliced Star mRNA sequence. Using 5′ and 3′ RACE, strand-specific RT-PCR, and ribonuclease protection assays, we demonstrated that Star NAT is expressed in MA-10 Leydig cells and steroidogenic murine tissues. Furthermore, we established that human chorionic gonadotropin stimulates Star NAT expression via cAMP. Our results show that sense-antisense Star RNAs may be coordinately regulated since they are co-expressed in MA-10 cells. Overexpression of Star NAT had a differential effect on the expression of the different Star sense transcripts following cAMP stimulation. Meanwhile, the levels of StAR protein and progesterone production were downregulated in the presence of Star NAT. Our data identify antisense transcription as an additional mechanism involved in the regulation of steroid biosynthesis.
机译:胆固醇转运对于包括类固醇生成在内的许多生理过程都是必不可少的。在类固醇生成细胞中,激素诱导的胆固醇转运受包含类固醇生成的急性调节蛋白(StAR)的蛋白质复合物控制。 Star表示为3.5、2.8和1.6 kb的转录本,仅在3'非翻译区不同。因为这些转录物共享相同的启动子,所以mRNA的稳定性可能与它们的差异调控和表达有关。最近,天然反义转录物(NATs)的鉴定为真核基因表达增加了另一种调控水平。在这里,我们确定了一个新的NAT,它与拼接的Star mRNA序列互补。使用5'和3'RACE,链特异性RT-PCR和核糖核酸酶保护实验,我们证明了Star NAT在MA-10 Leydig细胞和类固醇小鼠组织中表达。此外,我们建立了人类绒毛膜促性腺激素通过cAMP刺激Star NAT表达。我们的结果表明,正义反义之星RNA可能受到协调调控,因为它们在MA-10细胞中共表达。在cAMP刺激后,Star NAT的过表达对不同Star转录本的表达具有不同的影响。同时,在Star NAT的存在下,StAR蛋白和孕酮的产生水平被下调。我们的数据确定反义转录是参与类固醇生物合成调控的另一种机制。

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