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miR-216 and miR-217 expression is reduced in transgenic mouse models of pancreatic adenocarcinoma knockout of miR-216/miR-217 host gene is embryonic lethal

机译:在胰腺癌的转基因小鼠模型中miR-216和miR-217的表达降低miR-216 / miR-217宿主基因的敲除对胚胎致死

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摘要

Mice harboring a G12D activating Kras mutation are among the most heavily studied models in the field of pancreatic adenocarcinoma (PDAC) research. miRNAs are differentially expressed in PDAC from patients and mouse models of PDAC. To better understand the relationship that Kras activation has on miRNA expression, we profiled the expression of 629 miRNAs in RNA isolated from the pancreas of control, young, and old P48+/Cre;LSL-KRASG12D as well as PDX-1-Cre;LSL-KRASG12D mice. One hundred of the differentially expressed miRNAs had increased expression in the advanced disease (old) P48+/Cre;LSL-KRASG12D compared to wild-type mice. Interestingly, the expression of three miRNAs, miR-216a, miR-216b, and miR-217, located within a ~30-kbp region on 11qA3.3, decreased with age (and phenotype severity) in these mice. miR-216/-217 expression was also evaluated in another acinar-specific ELa-KrasG12D mouse model and was downregulated as well. As miR-216/-217 are acinar enriched, reduced in human PDAC and target KRAS, we hypothesized that they may maintain acinar differentiation or represent tumor suppressive miRNAs. To test this hypothesis, we deleted a 27.9-kbp region of 11qA3.3 containing the miR-216/-217 host gene in the mouse's germ line. We report that germ line deletion of this cluster is embryonic lethal in the mouse. We estimate that lethality occurs shortly after E9.5. qPCR analysis of the miR-216b and miR-217 expression in the heterozygous animals showed no difference in expression, suggesting haplosufficiency by some type of compensatory mechanism. We present the differential miRNA expression in KrasG12D transgenic mice and report lethality from deletion of the miR-216/-217 host gene in the mouse's germ line.
机译:携带G12D激活Kras突变的小鼠是胰腺腺癌(PDAC)研究领域中研究最深入的模型之一。 miRNA在PDAC的患者模型和小鼠模型中在PDAC中差异表达。为了更好地了解Kras激活与miRNA表达的关系,我们分析了从对照,年轻和老年P48 + / Cre ; LSL-KRAS G12D 以及PDX-1-Cre; LSL-KRAS G12D 小鼠。与野生型小鼠相比,一百种差异表达的miRNA在晚期疾病(老)P48 + / Cre ; LSL-KRAS G12D 中的表达增加。有趣的是,在这些小鼠中,位于11qA3.3上〜30 kbp区域内的三个miRNA,miR-216a,miR-216b和miR-217的表达随着年龄(和表型严重性)而降低。在另一种腺泡特异性ELa-Kras G12D 小鼠模型中也评估了miR-216 / -217的表达,并且该表达也被下调。由于miR-216 / -217富含腺泡,在人PDAC和靶KRAS中减少,我们推测它们可能维持腺泡分化或代表肿瘤抑制性miRNA。为了验证这一假设,我们删除了小鼠生殖系中含有miR-216 / -217宿主基因的11qA3.3的27.9kbp区域。我们报告该群集的种系删除是小鼠中的胚胎致死性。我们估计,致死性在E9.5之后不久发生。对杂合动物中miR-216b和miR-217表达的qPCR分析显示,表达无差异,这表明通过某种类型的补偿机制存在单足不足。我们提出了在Kras G12D 转基因小鼠中不同的miRNA表达,并报道了在小鼠种系中miR-216 / -217宿主基因缺失导致的致死性。

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