[下丘脑内肽酶对芦松素、生长抑素和P物质分解的影响]。

Voprosy biokhimii mozga Pub Date : 1978-01-01
T N Akopian, A A Arutiunian, A Laĭta, A A Galoian
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引用次数: 0

摘要

分离出酸性和中性蛋白酶,目的是研究它们在下丘脑肽和蛋白质分解中的作用。通过丙酮沉淀,SP-Sephadex G-50层析,G-100柱凝胶过滤,DEAE-Sephadex A-50层析,从下丘脑中纯化出约1000倍的酸性蛋白酶。酶的分子量约为50,000。对血红蛋白的最大活性在pH值为3,2- 3,5时获得:血清白蛋白的分裂速度要慢得多。下丘脑酸性蛋白酶被-丙酮酸苯酯、苯并氯铵部分抑制,被低浓度胃抑素完全抑制。该蛋白酶可分裂生长抑素、P物质和P物质的一些c -片段。酶在这些肽上的可能作用位点通过端基丹酚技术确定。采用DEAE Sephadex a -50层析、Sephadex g -100凝胶过滤、luliberin为底物DEAE Sephadex a -50层析,从0.3 M牛下丘脑蔗糖匀浆的上清部分(100.000 g)中分离出中性蛋白酶。用含邻苯二醛的酸溶性肽的荧光测定法测定了脂溶性蛋白和变性血红蛋白的分解率。纯化的酶制剂的pH值在7—7,5之间具有最佳活性。酶的分子量约为30—40000。l -1-甲酰基-2-苯基乙基氯甲基酮、对氯甲苯甲酸酯和二价离子Co2+、Zn2+抑制了酶的活性,二硫苏糖醇显著增强了酶的活性。糖苷与血红蛋白水解反应的Km值分别为1,33.10(-5)和5,2.10(-5)M。来自下丘脑的中性蛋白酶可切割松脂素、生长抑素和p物质。该酶在这些肽上的作用位点通过丹酚技术测定。酸性蛋白酶,最有可能是组织蛋白酶D和来自下丘脑的中性蛋白酶,可能在下丘脑肽激素的形成和分解中起重要作用。
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[Breakdown of luliberin, somatostatin and substance P as an effect of hypothalamic endopeptidases].

Acid and neutral proteinases were isolated with the purpose of investigating their participation in the breakdown of hypothalamic peptides and proteins. The acid proteinase was purified about 1000-fold from hypothalamus by precipitation with acetone, chromatography on SP-Sephadex G-50, gel filtration through column of G-100 and chromatography on DEAE-Sephadex A-50. The molecular weight of the enzyme was approximately 50.000. Maximal activity against hemoglobin was obtained at pH 3,2--3,5: serum albumin was split much more slowly. Hypothalamus acid proteinase was partially inhibited by beta-phenyl pyruvate, benzothonium cloride, and was completely inhibited by low concentrations of pepstatin. This proteinase splits somatostatin, Substance P and some C-fragments of Substance P. The probable sites of enzyme action on these peptides were determined by the end group dansyl technique. Neutral proteinase was isolated from the supernatant fraction(100.000 g) of a 0,3 M sucrose homogenate of bovine hypothalamus by chromatography on DEAE Sephadex A-50, gel filtration through Sephadex G-100 and rechromatography on DEAE sephadex A-50 using luliberin as substrate. The rates of breakdown of luliberin and denaturated hemoglobin were measured by fluorometric estimation of acid-soluble peptides wieht o-phthaldialdehyde. The purifed enzyme preparations have a pH optimum of activity at 7--7,5. The enzymes molecular weight was approximatelyy 30--40.000. Enzyme activity was inhibited by L-1-tosylamide-2-phenylethylchloromethyl ketone, p-chloromercuribenzoate and divalent ions Co2+, Zn2+ and was significantly enhanced by dithiothreitol. The Km values for the reaction of hydrolysis of luliberin and hemoglobin were 1,33.10(-5) and 5,2.10(-5) M respectively. The neutral proteinase from the hypothalamus cleaves luliberin, somatostatin and Substance P. Sites of action of the enzyme upon those peptides were determined by means of the dansyl technique. The acid proteinase, most likely cathepsin D, and neutral proteinase from hypothalamus, may play an important role in the formation and breakdown of peptide hormones in the hypothalamus.

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[Heterogeneity and regulation of glutamate dehydrogenase activity in mammalian brain and liver]. [Certain neurochemical aspects of the metabolism of hormones and mediators (development of a single concept]. GABA and central monoamine release. [Breakdown of luliberin, somatostatin and substance P as an effect of hypothalamic endopeptidases]. [Participation of phosphopeptides in oxidative amino acid exchange in brain tissue].
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