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首页> 外文期刊>The Journal of general physiology >Water regulation by a presumptive hormone contained in identified neurosecretory cell R15 of Aplysia.
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Water regulation by a presumptive hormone contained in identified neurosecretory cell R15 of Aplysia.

机译:通过鉴定的海葵神经分泌细胞R15中包含的推定激素进行水调节。

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Injection of an homogenate of identified neuron R15 into the hemocele of Aplysia produced a weight increase of 3-10% within 90 min. Control injections of several other identified neurons or of seawater, were ineffective. The weight increase occurred even when the animals were maintained in 5% hyperosmotic seawater. The activity of the R15 homogenate was retained after acidification to pH 2 and heating to 100 degrees C; but activity was destroyed by proteolytic digestion with Pronase. Dialysis in cellulose dialysis tubing resulted in a significant loss of aion on Sephadex G-50 (nominal exclusion limits 1,500-30,000 daltons), activity was present in the partially included volumes, but was absent in the totally excluded or totally included volumes. The data support the notion that R15 contains one or more hormones involved in ionic regulation or water balance. The results of bioassays of R15 extracts subjected to different treatments are consistent with the hypothesis that activity is due to one or more stable polypeptides of relatively low molecular weight.
机译:将鉴定出的神经元R15匀浆注射到海藻的血红素中可在90分钟内使体重增加3-10%。其他几种确定的神经元或海水的对照注射均无效。即使将动物饲养在5%高渗海水中,体重也会增加。酸化至pH 2并加热至100摄氏度后,R15匀浆的活性得以保留;但是通过Pronase的蛋白水解消化会破坏活性。纤维素透析管中的透析导致Sephadex G-50上的阴离子大量流失(标称排除极限1,500-30,000道尔顿),部分包含的体积中存在活性,而完全排除或完全包含的体积中则不存在活性。数据支持以下观点:R15包含一种或多种参与离子调节或水平衡的激素。经过不同处理的R15提取物的生物测定结果与以下假设相符:活性是由于一种或多种相对较低分子量的稳定多肽所致。

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