BioPharmaNet, Department of Biochemistry and Molecular Biology, University of Ferrara, Via Fossato di Mortara n.74, 44121 Ferrara, Italy.
ChemMedChem. 2011 Dec 9;6(12):2192-202. doi: 10.1002/cmdc.201100270. Epub 2011 Oct 19.
Herein we describe the activity of a peptide nucleic acid (PNA) that targets microRNA-210 (miR-210), which is associated with hypoxia and is modulated during erythroid differentiation. PNAs directed against miR-210 were designed to bind with high affinity to the target RNA strand and to undergo efficient uptake in target cells. A polyarginine-PNA conjugate directed against miR-210 (Rpep-PNA-a210) showed both very high affinity for RNA and efficient uptake into target cells without the need for transfection reagents. An unmodified PNA of the same sequence displayed the ability to bind RNA, but cellular uptake was very poor. Consistent with this, only Rpep-PNA-a210 strongly inhibited miR-210 activity, as evaluated by assays on undifferentiated K562 cells and on cells treated with mithramycin, which was found to induce erythroid differentiation and miR-210 overexpression. Targeting miR-210 by Rpep-PNA-a210 resulted in: 1) a decrease in miR-210 levels as measured by RT-PCR, 2) up-regulation of raptor mRNA, 3) a decrease in γ-globin mRNA, and 4) decreased expression of differentiated functions (i.e., proportion of benzidine-positive cells, content of embryo-fetal hemoglobins). The efficient delivery of anti-miR PNAs through a suitable peptide carrier (Rpep-PNA-a210) leads to the inhibition of miR-210 activity, altering the expression of miR-210-regulated erythroid functions.
在此,我们描述了一种肽核酸(PNA)的活性,该 PNA 靶向与低氧相关且在红细胞分化过程中受到调节的 microRNA-210(miR-210)。针对 miR-210 的 PNAs 被设计为与靶 RNA 链以高亲和力结合,并在靶细胞中进行有效摄取。针对 miR-210 的聚精氨酸-PNA 缀合物(Rpep-PNA-a210)显示出对 RNA 的高亲和力和对靶细胞的高效摄取能力,而无需转染试剂。具有相同序列的未经修饰的 PNA 显示出结合 RNA 的能力,但细胞摄取非常差。与此一致的是,只有 Rpep-PNA-a210 强烈抑制 miR-210 活性,这可以通过在未分化的 K562 细胞和用米托蒽醌处理的细胞上进行的测定来评估,米托蒽醌被发现诱导红细胞分化和 miR-210 过表达。通过 Rpep-PNA-a210 靶向 miR-210 导致:1)RT-PCR 测量的 miR-210 水平降低,2)raptor mRNA 的上调,3)γ-珠蛋白 mRNA 的减少,以及 4)分化功能的表达降低(即,联苯胺阳性细胞的比例,胚胎血红蛋白的含量)。通过合适的肽载体(Rpep-PNA-a210)有效递送至抗 miR-PNAs 导致 miR-210 活性的抑制,改变了 miR-210 调节的红细胞功能的表达。