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人脑中的免疫反应性肾素:分布与特性

Immunoreactive renin in human brain: distribution and properties.

作者信息

Mizuno K, Hashimoto S, Ojima M, Kunii N, Tani M, Niimura S, Watari H, Fukuchi S

出版信息

Jpn Circ J. 1985 Sep;49(9):1005-11. doi: 10.1253/jcj.49.1005.

Abstract

Readily detectable levels of renin activity were demonstrated in the human brain. This activity was inhibited by specific antibody raised against human renal renin, indicating that it was not due to the nonspecific action of proteases such as cathepsin D. The pineal gland was found to be the richest source of renin followed by the pituitary, hypothalamus and hippocampus. The substantia nigra, caudate nucleus, putamen and thalamus contained moderately high concentrations of renin. The brain renins from pineal and pituitary glands shared some biochemical features with well-known kidney renin, such as molecular weight (46,000 daltons for pineal renin; 37,000-45,000 daltons for pituitary renin), optimum pH (6.0-7.0), the presence of trypsin activatable inactive renin, and a glycoprotein nature. However, the electrofocusing pattern of renin from pituitary tissue (pI = 4.43, 5.77) differed from that of plasma and kidney enzymes heretofore reported, a discrepancy which could be interpreted as evidence for the endogeneous synthesis of renin in the brain tissue. Furthermore, a high activity of immunoreactive renin was found in human neuroblastoma tissue. The biochemical characteristics of the neuroblastomal renin were generally similar to the known properties of kidney renin in many respects, providing evidence of the presence of the renin-angiotensin system within human neuronal cells.

摘要

在人类大脑中发现了易于检测到的肾素活性水平。这种活性被针对人肾肾素产生的特异性抗体所抑制,这表明它不是由于诸如组织蛋白酶D等蛋白酶的非特异性作用所致。松果体被发现是肾素最丰富的来源,其次是垂体、下丘脑和海马体。黑质、尾状核、壳核和丘脑含有中等浓度的肾素。松果体和垂体的脑肾素与著名的肾肾素具有一些生化特征,如分子量(松果体肾素为46,000道尔顿;垂体肾素为37,000 - 45,000道尔顿)、最适pH值(6.0 - 7.0)、存在可被胰蛋白酶激活的无活性肾素以及糖蛋白性质。然而,垂体组织中肾素的等电聚焦模式(pI = 4.43, 5.77)与迄今报道的血浆和肾脏酶不同,这种差异可以解释为脑组织中肾素内源性合成的证据。此外,在人类神经母细胞瘤组织中发现了高活性的免疫反应性肾素。神经母细胞瘤肾素的生化特征在许多方面通常与已知的肾肾素特性相似,这为人类神经元细胞内肾素 - 血管紧张素系统的存在提供了证据。

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