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当与反向递送肽偶联时,肽核酸(PNA)在培养的神经元中内化更快。反义活性可抑制大细胞催产素神经元中的靶mRNA和蛋白质。

A peptide nucleic acid (PNA) is more rapidly internalized in cultured neurons when coupled to a retro-inverso delivery peptide. The antisense activity depresses the target mRNA and protein in magnocellular oxytocin neurons.

作者信息

Aldrian-Herrada G, Desarménien M G, Orcel H, Boissin-Agasse L, Méry J, Brugidou J, Rabié A

机构信息

CNRS-UPR 9055, Biologie des Neurones Endocrines, CCIPE, 141 rue de la Cardonille, 34094 Montpellier Cedex 5, France.

出版信息

Nucleic Acids Res. 1998 Nov 1;26(21):4910-6. doi: 10.1093/nar/26.21.4910.

Abstract

A peptide nucleic acid (PNA) antisense for the AUG translation initiation region of prepro-oxytocin mRNA was synthesized and coupled to a r etro-inverso peptide that is rapidly taken up by cells. This bioconjugate was internalized by cultured cerebral cortex neurons within minutes, according to the specific property of the vector peptide. The PNA alone also entered the cells, but more slowly. Cell viability was unaffected when the PNA concentrations were lower than 10 microM and incubation times less than for 24 h. Magnocellular neurons from the hypothalamic supraoptic nucleus, which produce oxytocin and vasopressin, were cultured in chemically defined medium. Both PNA and vector peptide-PNA depressed the amounts of the mRNA coding for prepro-oxytocin in these neurons. A scrambled PNA had no effect and the very cognate prepro-vasopressin mRNA was not affected. The antisense PNA also depressed the immunocytochemical signal for prepro-oxytocin in this culture in a dose- and time-dependent manner. These results show that PNAs driven by the retro-inverso vector peptide are powerful antisense reagents for use on cells in culture.

摘要

合成了一种针对前体催产素 mRNA 的 AUG 翻译起始区域的肽核酸(PNA)反义物,并将其与一种能被细胞快速摄取的反向肽偶联。根据载体肽的特异性,这种生物共轭物在数分钟内被培养的大脑皮质神经元内化。单独的 PNA 也能进入细胞,但速度较慢。当 PNA 浓度低于 10 microM 且孵育时间少于 24 小时时,细胞活力不受影响。来自下丘脑视上核的大细胞神经元,其产生催产素和加压素,在化学限定培养基中培养。PNA 和载体肽 -PNA 均降低了这些神经元中编码前体催产素的 mRNA 的量。一个乱序的 PNA 没有效果,并且与之同源的前体加压素 mRNA 不受影响。反义 PNA 还以剂量和时间依赖性方式降低了这种培养物中前体催产素的免疫细胞化学信号。这些结果表明,由反向肽载体驱动的 PNA 是用于培养细胞的强大反义试剂。

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