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首页> 外文期刊>Journal of Neurochemistry: Offical Journal of the International Society for Neurochemistry >Altered processing of the neurotensineuromedin N precursor in PC2 knock down mice: a biochemical and immunohistochemical study.
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Altered processing of the neurotensineuromedin N precursor in PC2 knock down mice: a biochemical and immunohistochemical study.

机译:PC2基因敲除小鼠中神经降压素/ neuromedin N前体的加工改变:生化和免疫组织化学研究。

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摘要

Neurotensin (NT) and neuromedin N (NN) are generated by endoproteolytic cleavage of a common precursor molecule, pro-NT/NN. To gain insight into the role of prohormone convertases PC1, PC2, and PC7 in this process, we investigated the maturation of pro-NT/NN in the brain of PC7 (PC7-/-), PC2 (PC2-/-), and/or PC1 (PC1+/- and PC2-/-; PC1+/-) knock down mice. Inactivation of the PC7 gene was without effect, suggesting that this convertase is not involved in the processing of pro-NT/NN. By contrast, there was a 15% decrease in NT and a 50% decrease in NN levels, as measured by radioimmunoassay, in whole brain extracts from PC2 null as compared with wild type mice. Using immunohistochemistry, we found that this decrease in pro-NT/NN maturation products was uneven and that it was most pronounced in the medial preoptic area, lateral hypothalamus, and paraventricular hypothalamic nuclei. These results suggest that PC2 plays a critical role in the processing of pro-NT/NN in mouse brain and that its deficiency may be compensated to a regionally variable extent by other convertases. Previous data have suggested that PC1 might be subserving this role. However, there was no change in the maturation of pro-NT/NN in the brain of mice in which the PC1 gene had been partially inactivated, implying that complete PC1 knock down may be required for loss of function.
机译:神经降压素(NT)和神经调节素N(NN)是通过内蛋白水解常见前体分子pro-NT / NN产生的。为了深入了解激素原转化酶PC1,PC2和PC7在此过程中的作用,我们研究了PC7(PC7-/-),PC2(PC2-/-)和PC7大脑中pro-NT / NN的成熟过程。 /或PC1(PC1 +/-和PC2-/-; PC1 +/-)击倒小鼠。 PC7基因的灭活没有作用,表明该转化酶不参与pro-NT / NN的加工。相比之下,与野生型小鼠相比,用放射免疫法测定的PC2 null的全脑提取物中的NT水平降低了15%,NN水平降低了50%。使用免疫组织化学,我们发现前NT / NN成熟产物的这种减少是不均匀的,并且在视前内侧区域,下丘脑外侧和室下丘脑旁核中最明显。这些结果表明,PC2在小鼠脑中pro-NT / NN的加工中起着至关重要的作用,其缺陷可能被其他转化酶在区域可变的程度上补偿了。以前的数据表明,PC1可能正在扮演这个角色。但是,在PC1基因已部分失活的小鼠的大脑中,pro-NT / NN的成熟没有变化,这意味着可能需要完全敲除PC1才能丧失功能。

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