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短反义寡核苷酸介导的抑制作用强烈依赖于寡核苷酸的长度和浓度,但几乎与靶序列的位置无关。

Short antisense oligonucleotide-mediated inhibition is strongly dependent on oligo length and concentration but almost independent of location of the target sequence.

作者信息

Fakler B, Herlitze S, Amthor B, Zenner H P, Ruppersberg J P

机构信息

Sektion für Sensorische Biophysik, HNO-Universitätsklinik Tübingen, Germany.

出版信息

J Biol Chem. 1994 Jun 10;269(23):16187-94.

PMID:8206920
Abstract

The inhibitory effect of short antisense oligodeoxynucleotides (aODNs) on cRNA expression in Xenopus oocytes was measured using an electrophysiological assay based on subunit-specific block of cloned alpha-amino-3-hydroxy-5-methyl-4-isoxazole-propionate receptors. The effect of both phosphorothioate-modified (PS) and phosphodiester (PO) aODNs was strongly length dependent with a half-maximal inhibition calculated for an oligo length of 7.6 nucleotides (nt) and 9.9 nt, respectively. More than 95% inhibition was mediated by a PS aODN of 12 nt and by PO aODNs > or = 15 nt. At a given length PS and PO aODNs showed differential dependence of their inhibitory effect on the injected aODN concentration (half-maximal inhibition at 18 ng/microliter for a PO 12-mer and at 0.19 ng/microliter for a PS 12-mer) and differential saturation behavior. The inhibitory effect of aODNs, even as short as 8 nt for PS oligomers, was highly sequence specific, but almost independent of the position of the respective target site on the cRNA (for PS 8-mers, > or = 70% expression inhibition throughout the tested target sites from the translation initiation to the 3'-untranslated region). Thus, short PS aODNs can be reliably used in order to specifically inhibit protein expression in experiments addressing physiological, molecular biological, and perhaps even therapeutical issues.

摘要

使用基于克隆的α-氨基-3-羟基-5-甲基-4-异恶唑丙酸受体亚基特异性阻断的电生理测定法,测量了短反义寡脱氧核苷酸(aODN)对非洲爪蟾卵母细胞中cRNA表达的抑制作用。硫代磷酸酯修饰(PS)和磷酸二酯(PO)aODN的作用都强烈依赖长度,计算出的半最大抑制作用分别对应7.6个核苷酸(nt)和9.9 nt的寡核苷酸长度。12 nt的PS aODN和≥15 nt的PO aODN介导了超过95%的抑制作用。在给定长度下,PS和PO aODN对注射的aODN浓度的抑制作用表现出不同的依赖性(12聚体PO在18 ng/微升时达到半最大抑制,12聚体PS在0.19 ng/微升时达到半最大抑制)以及不同的饱和行为。aODN的抑制作用即使对于短至8 nt的PS寡聚物也是高度序列特异性的,但几乎与cRNA上各自靶位点的位置无关(对于PS 8聚体,从翻译起始到3'非翻译区的整个测试靶位点,表达抑制≥70%)。因此,短PS aODN可可靠地用于在解决生理、分子生物学甚至治疗问题的实验中特异性抑制蛋白质表达。

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