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RPSAP52 lncRNA Inhibits p21Waf1/CIP Expression by Interacting With the RNA Binding Protein HuR

机译:通过与RNA结合蛋白质的相互作用来抑制P21WAF1 / CIP表达的RPSAP52 LNCRNA

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摘要

Long noncoding RNAs have been recently demonstrated to have an important role in fundamental biological processes, and their deregulated expression has been found in several human neoplasias. Our group has recently reported a drastic overexpression of the long noncoding RNA (lncRNA) RPSAP52 (ribosomal protein SA pseudogene 52) in pituitary adenomas. We have shown that this lncRNA increased cell proliferation by upregulating the expression of the chromatinic proteins HMGA1 and HMGA2, functioning as a competing endogenous RNA (ceRNA) through competitively binding to microRNA-15a (miR-15a), miR-15b, and miR-16. The aim of this work was to identify further mechanisms by which RPSAP52 overexpression could contribute to the development of pituitary adenomas. We investigated the involvement of RPSAP52 in the modulation of the expression of cell cycle-related genes, such as p21Waf1/CIP, whose deregulation plays a critical role in pituitary cell transformation. We report that RPSAP52, interacting with the RNA binding protein HuR (human antigen R), favors the delocalization of miR-15a, miR-15b, and miR-16 on the cyclin-dependent kinase inhibitor p21Waf1/CIP1 that, accordingly, results in downregulation in pituitary adenomas. A RNA immtmoprecipitation sequencing (RIPseq) analysis performed on cells overexpressing RPSAP52 identified 40 messenger RNAs (mRNAs) enriched in Argonauts 2 (AGO2) immunoprecipitated samples. Among them, we focused on GAS8 (growth arrest-specific protein 8) gene. Consistently, GAS8 expression was dowuregulated in all the analyzed pituitary adenomas with respect to normal pituitary and in RPSAP52-overepressing cells, supporting the role of RPSAP52 in addressing genes involved in growth inhibition and cell cycle arrest to miRNA-induced degradation. This study unveils another RPSAP52-mediated molecular mechanism in pituitary tumorigenesis.
机译:最近已经证明了长时间的RNA在基本生物过程中具有重要作用,并且在几种人类肿瘤中发现了它们的病程表达。我们的组最近报告了垂体腺瘤中长的非分量RNA(LNCRNA)RPSAP52(核糖体蛋白SA伪52)的急转表达。我们已经表明,通过上调染色质蛋白HMGA1和HMGA2的表达,通过竞争地结合MicroRNA-15a(miR-15a),miR-15b和mir - 16。这项工作的目的是确定RPSAP52过表达可能导致垂体腺瘤的发展有助于进一步的机制。我们调查了RPSAP52在调节细胞周期相关基因的调节中的累积,例如P21WAF1 / CIP,其放松体调在垂体细胞转化中发挥着关键作用。我们报告rpsap52与RNA结合蛋白HUR(人抗原R)相互作用,利用MIR-15a,miR-15b和miR-16对细胞周期蛋白依赖性激酶抑制剂p21waf1 / cip1的删除性,因此导致垂体腺瘤下调。对过表达RPSAP52的细胞进行的RNA免疫沉淀序列(RIPSeq)分析鉴定在Argonauts 2(前2)免疫沉淀的样品中富含40个信使RNA(MRNA)。其中,我们专注于Gas8(生长逮捕特异性蛋白8)基因。始终如一地,在所有分析的垂体腺瘤相对于正常的垂体和rpsap52 - 脱脂细胞中赋予Gas8表达,支持RPSAP52在寻址生长抑制和细胞循环停滞的基因中对miRNA诱导的降解的作用。本研究推出了垂体肿瘤发生中的另一种RPSAP52介导的分子机制。

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