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Expressional potency of mRNAs encoding receptors and voltage-activated channels in the postmortem rat brain.

机译:死后大鼠大脑中编码受体和电压激活通道的mRNA的表达能力。

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摘要

The stability and integrity of mRNAs encoding neurotransmitter receptors and voltage-activated channels in the postmortem rat brain was investigated by isolating poly(A)+ mRNA, injecting it into Xenopus oocytes, and then examining the expression of functional neurotransmitter receptors and voltage-activated channels in the oocyte membrane by electrophysiological recording. This approach was also used to assess the stability of mRNAs in brains that were incubated in oxygenated mammalian Ringer's solution for various lengths of time and from brains that were freshly frozen and then thawed at room temperature. Oocytes injected with mRNA from up to 21-hr postmortem brains gave large agonist- and voltage-activated responses, indicating that mRNAs encoding neurotransmitter receptors and voltage-activated channels are relatively stable in postmortem brain tissue. In contrast, oocytes injected with mRNA from brains incubated in Ringer's solution exhibited smaller responses, and oocytes injected with mRNA from tissue that was frozen and then thawed displayed very small or undetectable responses. Northern blot analysis using a nucleic acid probe for rat brain Na(+)-channel mRNA indicated that the size of the Na+ currents in injected oocytes reflected the levels of mRNA for Na+ channels in the different mRNA preparations. Thus, the expressional potency of mRNAs encoding neurotransmitter receptors and voltage-activated channels is quite stable in postmortem brains in situ, but it is reduced if the brains are kept in oxygenated saline, and freezing and thawing of tissue results in rapid degeneration of mRNA.
机译:通过分离poly(A)+ mRNA,将其注射到非洲爪蟾卵母细胞中,然后检查功能性神经递质受体和电压激活通道的表达,研究死后大鼠大脑中编码神经递质受体和电压激活通道的mRNA的稳定性和完整性。在卵母细胞膜上通过电生理记录。该方法还用于评估在新鲜的冷冻后在室温下融化的大脑中的mRNA的稳定性,这些大脑在含氧的哺乳动物林格氏液中孵育了不同的时间长度。从死后长达21小时的大脑中注射mRNA的卵母细胞会产生大量的激动剂和电压激活反应,这表明编码神经递质受体和电压激活通道的mRNA在死后大脑组织中相对稳定。相反,在林格氏液中温育的大脑注射了mRNA的卵母细胞表现出较小的反应,而冷冻并融化的组织中注射了mRNA的卵母细胞则表现出很小或无法检测到的反应。使用用于大鼠脑Na(+)通道mRNA的核酸探针进行Northern blot分析表明,注入的卵母细胞中Na +电流的大小反映了不同mRNA制剂中Na +通道的mRNA水平。因此,在死后的原位大脑中,编码神经递质受体和电压激活通道的mRNA的表达能力非常稳定,但是如果将大脑放在含氧的盐水中会降低其表达力,并且组织的冻结和解冻会导致mRNA的快速变性。

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