首页> 外文OA文献 >A comparison of the growth-promoting, lipolytic, diabetogenic and immunological properties of pituitary and recombinant-DNA-derived bovine growth hormone (somatotropin).
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A comparison of the growth-promoting, lipolytic, diabetogenic and immunological properties of pituitary and recombinant-DNA-derived bovine growth hormone (somatotropin).

机译:垂体和重组DNA衍生的牛生长激素(促生长素)的促生长,脂解,促糖尿病和免疫学性质的比较。

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摘要

The physiological mechanisms by which growth hormone (somatotropin) exerts its several metabolic activities remain poorly understood. In particular, there is disagreement as to whether the diabetogenic and lipolytic activities of the hormone are intrinsic properties of the molecule or are the result of contamination with other pituitary components. The availability of recombinant-DNA-derived bovine growth hormone (rebGH) presented an opportunity to compare the biological activities of rebGH and pituitary bGH in the absence of pituitary contaminants. Pituitary bGH and rebGH were immunologically identical in the radioimmunoassay for bGH, and good agreement was obtained for the potency of the latter measured by radioimmunoassay (1.6 units/mg) and the dwarf-mouse bioassay (1.4 units/mg). The lipolytic activity in vitro was examined by measuring the release of glycerol from rat epididymal fat maintained in the presence of dexamethasone (0.2 microgram/ml) and the material to be tested (0.1 and 0.2 mg/ml). Although two preparations of pituitary bGH stimulated a significant (P less than 0.01) increase in glycerol production, neither rebGH nor recombinant-DNA-derived chicken GH was lipolytic. However, when rebGH was intravenously injected into three sheep (0.15 mg/kg), the increase in plasma nonesterified fatty acids was similar to that measured with the same dose of pituitary bGH. Insulin-tolerance tests were conducted in sheep before and after treatment with rebGH and pituitary bGH (four subcutaneous injections of 0.15 mg/kg). Although the effect of rebGH was less than that of the pituitary hormone, both significantly impaired the ability of insulin to lower the concentration of plasma glucose. These data suggest that the lipolytic and diabetogenic activities of bGH are intrinsic properties of the molecule. However, the lipolytic activity may only become apparent after either modification of the molecule in vivo or activation of a lipolytic intermediate.
机译:生长激素(生长激素)发挥其几种代谢活性的生理机制仍然知之甚少。特别地,关于激素的致糖尿病和脂解活性是分子的固有特性还是由于其他垂体成分污染的结果,存在分歧。重组DNA衍生的牛生长激素(rebGH)的存在提供了一个机会,可以在没有垂体污染物的情况下比较rebGH和垂体bGH的生物学活性。垂体bGH和rebGH在放射免疫分析中对bGH的免疫学相同,并且通过放射免疫分析(1.6单位/ mg)和矮小鼠生物分析(1.4单位/ mg)测定的垂体bGH和rebGH的药效良好。通过测量在地塞米松(0.2微克/毫升)和待测物质(0.1和0.2毫克/毫升)存在下维持的大鼠附睾脂肪中甘油的释放来检查体外的脂解活性。尽管两种垂体bGH制剂刺激甘油产量显着增加(P小于0.01),但rebGH和重组DNA衍生的鸡GH都不具有脂解作用。但是,当将rebGH静脉内注射到三只绵羊(0.15 mg / kg)中时,血浆未酯化脂肪酸的增加与使用相同剂量的垂体bGH所测量的增加相似。在绵羊用rebGH和垂体bGH(四次皮下注射0.15 mg / kg)治疗之前和之后进行了胰岛素耐受性测试。尽管rebGH的作用小于垂体激素,但两者均显着削弱了胰岛素降低血浆葡萄糖浓度的能力。这些数据表明bGH的脂肪分解和致糖尿病活性是分子的固有特性。但是,仅在体内修饰分子或激活脂解中间体后,脂解活性才变得明显。

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