Suppr超能文献

氨肽酶M在大鼠脑微血管中的主要定位。

Major localization of aminopeptidase M in rat brain microvessels.

作者信息

Solhonne B, Gros C, Pollard H, Schwartz J C

出版信息

Neuroscience. 1987 Jul;22(1):225-32. doi: 10.1016/0306-4522(87)90212-0.

Abstract

The localization of two enkephalin-hydrolysing aminopeptidases i.e. aminopeptidase M (aminopeptidase N, EC 3.4.11.2) relatively insensitive to puromycin (Ki = 78 microM), and a puromycin-sensitive aminopeptidase (Ki = 1 microM) was studied in rat brain. The two aminopeptidases were differentially identified and/or localized using polyclonal anti-aminopeptidase M antibodies displaying anticatalytic activity and the inhibitors puromycin, bestatin and amastatin. Microvessels represent a major localization of cerebral aminopeptidase M as shown by the intense immunostaining of their walls in sections from various regions as well as in a fraction isolated from cerebral cortex homogenates by a sieving procedure. As compared to the starting homogenate, aminopeptidase M activity was enriched about twenty fold in this microvascular fraction. Aminopeptidase M was identified in this fraction by comparing the inhibitory potencies of antibodies and peptidase inhibitors towards the hydrolysis of [tyrosyl-3,5-3H, Met5]enkephalin to those found for the purified enzyme. A rather high aminopeptidase M activity was also localized in choroid plexuses. Following differential and gradient centrifugation analysis of cerebral cortex homogenates, aminopeptidase M activity was also enriched (by five to six fold) in fractions containing synaptic membranes. No significant soluble aminopeptidase M activity could be detected. These data suggest a dual localization of cerebral aminopeptidase M in microvessels and synaptic membranes consistent with its roles in preventing the access of circulating peptides to brain as well as in inactivating neuropeptides released from cerebral neurones. In comparison, puromycin-sensitive aminopeptidase activity, which is about 100 fold higher than aminopeptidase M activity in brain, was relatively low in microvessels and non-detectable in fractions enriched in synaptic membranes, being almost entirely restricted to soluble fractions.

摘要

在大鼠脑中研究了两种脑啡肽水解氨基肽酶的定位,即对嘌呤霉素相对不敏感的氨基肽酶M(氨基肽酶N,EC 3.4.11.2)(Ki = 78 μM)和一种对嘌呤霉素敏感的氨基肽酶(Ki = 1 μM)。使用具有抗催化活性的多克隆抗氨基肽酶M抗体以及抑制剂嘌呤霉素、贝司他汀和抑氨肽酶素,对这两种氨基肽酶进行了差异鉴定和/或定位。微血管是脑氨基肽酶M的主要定位部位,这在来自不同区域的切片以及通过筛分程序从大脑皮质匀浆中分离出的部分中,其壁的强烈免疫染色中得到了体现。与起始匀浆相比,该微血管部分中的氨基肽酶M活性富集了约20倍。通过比较抗体和肽酶抑制剂对[酪氨酰-3,5-3H,蛋氨酸5]脑啡肽水解的抑制效力与纯化酶的抑制效力,在该部分中鉴定出了氨基肽酶M。脉络丛中也定位有相当高的氨基肽酶M活性。对大脑皮质匀浆进行差速离心和梯度离心分析后,含有突触膜的部分中氨基肽酶M活性也有所富集(富集了五到六倍)。未检测到明显的可溶性氨基肽酶M活性。这些数据表明脑氨基肽酶M在微血管和突触膜中存在双重定位,这与其在防止循环肽进入大脑以及使从脑神经元释放的神经肽失活中的作用相一致。相比之下,对嘌呤霉素敏感的氨基肽酶活性在微血管中相对较低,在富含突触膜的部分中无法检测到,几乎完全局限于可溶性部分,其在脑中比氨基肽酶M活性高约100倍。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验