首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >Exogenous mRNA encoding tetanus or botulinum neurotoxins expressed in Aplysia neurons.
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Exogenous mRNA encoding tetanus or botulinum neurotoxins expressed in Aplysia neurons.

机译:编码破伤风或肉毒杆菌神经毒素的外源mRNA,在海Ap神经元中表达。

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摘要

Injection of exogenous mRNA purified from various tissue preparations into cellular translation systems such as Xenopus oocytes has allowed expression of complex proteins (e.g., receptors for neurotransmitters). No evidence for expression of injected exogenous mRNA, however, has been reported in terminally differentiated neurons. If achieved, it would allow the study of long-lasting changes of properties of nerve cells in their functional context. To obtain evidence of such expression, we chose two proteins that produce a detectable effect even at very low intracellular concentrations. Tetanus toxin and botulinum neurotoxin fulfill this criterion, being the most potent neurotoxins known. Both toxins block neurotransmitter release at nanomolar intracellular concentrations. These di-chain proteins, consisting of a light chain and a heavy chain, have recently been sequenced. Their active sites are located (or partly located) on the light chain. mRNAs encoding the light chain of either toxin were transcribed in vitro from the cloned and specifically truncated genes of Clostridium tetani and Clostridium botulinum, respectively, and injected into presynaptic cholinergic neurons of the buccal ganglia of Aplysia californica. Depression of neurotransmitter release appeared in less than 1 hr, demonstrating successful expression of foreign mRNA injected into a neuron in situ.
机译:从各种组织制备物中纯化的外源mRNA注射到诸如爪蟾卵母细胞的细胞翻译系统中已经允许表达复杂的蛋白质(例如,神经递质的受体)。然而,在终末分化的神经元中尚无注射外源mRNA表达的证据。如果实现,将可以研究神经细胞在其功能范围内的特性的长期变化。为了获得这种表达的证据,我们选择了两种蛋白,即使在非常低的细胞内浓度下也能产生可检测的效果。破伤风毒素和肉毒杆菌神经毒素符合这一标准,是已知的最有效的神经毒素。两种毒素均以纳摩尔细胞内浓度阻断神经递质的释放。这些由轻链和重链组成的双链蛋白最近已被测序。它们的活性位点位于(或部分位于)轻链上。分别从破伤风梭状芽胞杆菌和肉毒梭状芽胞杆菌的克隆和特异截短的基因中体外转录编码任一毒素轻链的mRNA,然后将其注射到加州海豚颊神经节的突触前胆碱能神经元中。在不到1小时内就出现了神经递质释放的抑制,表明外源mRNA成功地表达了就地注入神经元。

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