首页> 外文OA文献 >Plasma native and peptidase-derivable Met-enkephalin responses to restraint stress in rats. Adaptation to repeated restraint.
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Plasma native and peptidase-derivable Met-enkephalin responses to restraint stress in rats. Adaptation to repeated restraint.

机译:血浆天然和肽酶衍生的Met-脑啡肽对大鼠应激的反应。适应反复克制。

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摘要

Met-enkephalin and related proenkephalin A-derived peptides circulate in plasma at picomolar concentration as free, native pentapeptide and at nanomolar concentration in cryptic forms. We have optimized conditions for measurement of immunoreactive Met-enkephalin in plasma and for generation by trypsin and carboxypeptidase B of much greater amounts of total peptidase-derivable Met-enkephalin in plasma of rats, dogs, and humans. Free Met-enkephalin (11 pM) is constituted by native pentapeptide and its sulfoxide. Characterization of plasma total Met-enkephalin derived by peptidic hydrolysis revealed a small amount (38 pM) of Met-enkephalin associated with peptides of molecular mass less than 30,000 D, and probably derived from proenkephalin A, but much larger amounts of Met-enkephalin associated with albumin (1.2 nM) and with a globulin-sized protein (2.8 nM). Thus, plasma protein precursors for peptidase-derivable Met-enkephalin differ structurally and chemically from proenkephalin A. Met-enkephalin generated from plasma by peptidic hydrolysis showed naloxone-reversible bioactivity comparable to synthetic Met-enkephalin. Prolonged exposure of adult, male rats to restraint stress produced biphasic plasma responses, with peaks occurring at 30 s and 30 min in both free native and total peptidase-derivable Met-enkephalin. Repeated daily exposure to this 30-min stress resulted in adaptive loss of responses of both forms to acute restraint. Initial plasma responses of Met-enkephalin paralleled those of epinephrine and norepinephrine, but subsequently showed divergence of response. In conclusion, Met-enkephalin circulates in several forms, some of which may be derived from proteins other than proenkephalin A, and plasma levels of both free native, and peptidase-derivable Met-enkephalin are modulated physiologically.
机译:Met-脑啡肽和相关的前脑啡肽A肽在皮摩尔浓度下以游离天然五肽的形式在血浆中循环,并在纳摩尔浓度下以隐性形式循环。我们已经优化了测量血浆中免疫反应性Met-脑啡肽的条件,并通过胰蛋白酶和羧肽酶B生成了大鼠,狗和人血浆中大量的总肽酶衍生Met-脑啡肽。游离的Met-脑啡肽(11 pM)由天然五肽及其亚砜组成。通过肽水解获得的血浆总Met-脑啡肽的特征表明,少量(38 pM)与分子量小于30,000 D的肽相关的Met-脑啡肽可能源自前脑啡肽A,但与之相关的Met-脑啡肽的数量大得多白蛋白(1.2 nM)和球蛋白大小的蛋白质(2.8 nM)。因此,肽酶衍生的Met-脑啡肽的血浆蛋白前体与原脑啡肽A在结构和化学上都不同。血浆中通过肽水解产生的Met-脑啡肽的纳洛酮可逆生物活性与合成Met-脑啡肽相当。成年雄性大鼠长时间暴露于束缚压力下会产生两相血浆反应,游离天然和总肽酶衍生的Met-脑啡肽均在30 s和30 min出现峰值。每天反复暴露于这种30分钟的压力下,导致两种形式对急性约束的反应都失去适应性。 Met-脑啡肽的初始血浆反应与肾上腺素和去甲肾上腺素的反应平行,但随后显示反应差异。总之,Met-脑啡肽以几种形式循环,其中某些可能源自除前脑啡肽A以外的蛋白质,并且游离天然血浆和肽酶衍生的Met-脑啡肽的血浆水平在生理上受到调节。

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