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从龙虾神经分泌腺中鉴定并表征一种能在龙虾神经肌肉制剂中诱导环鸟苷酸积累的多肽。

Identification and characterization of a polypeptide from a lobster neurosecretory gland that induces cyclic GMP accumulation in lobster neuromuscular preparations.

作者信息

Goy M F, Mandelbrot D A, York C M

出版信息

J Neurochem. 1987 Mar;48(3):954-66. doi: 10.1111/j.1471-4159.1987.tb05610.x.

Abstract

Several observations suggest that cyclic GMP might regulate some aspect of neuromuscular physiology or metabolism in the lobster. Homarus americanus: lobster muscle is one of the richest known sources of cyclic GMP-dependent protein kinase, the preparation contains several phosphoproteins whose state of phosphorylation is affected by cyclic GMP more effectively than by cyclic AMP, and guanylate cyclase and phosphodiesterase are active in this tissue. However, no factor has yet been identified that alters lobster muscle cyclic GMP levels. We have screened extracts of neural and neurosecretory structures for the capacity to promote cyclic GMP accumulation in isolated exoskeletal muscles. Extracts of the sinus gland (a neurohemal organ found in the eyestalk) contain a factor that induces up to 100-fold increases in muscle cyclic GMP content, whereas extracts of other tissues are ineffective. This factor can also act on targets other than muscle, with hepatopancreas, testis, and neuronal tissue showing the largest responses. The sinus gland factor does not appear to affect cyclic GMP metabolism by depolarizing the preparation or by mobilizing extracellular Ca2+. The effect on cyclic GMP levels is dose-dependent and linear with time. Biological activity is destroyed by boiling and by 90% ethanol. It is also destroyed by trypsin, chymotrypsin, or pronase, which suggests that the factor is a protein or peptide. Both gel filtration chromatography and experiments using dialysis tubing with different molecular weight exclusion limits indicate that the factor has an apparent molecular weight of 5,000-12,000 daltons. A preliminary fractionation scheme, based on gel filtration, ion-exchange, and reverse-phase chromatography, gives greater than 1,300-fold purification. Our long-range goal is to purify this factor to homogeneity, compare it to other peptide hormones, and use it as a probe to evaluate the role of cyclic GMP at the neuromuscular junction.

摘要

多项观察结果表明,环鸟苷酸(cyclic GMP)可能调节龙虾神经肌肉生理学或新陈代谢的某些方面。美洲螯龙虾(Homarus americanus):龙虾肌肉是已知富含环鸟苷酸依赖性蛋白激酶最丰富的来源之一,该制剂含有几种磷蛋白,其磷酸化状态受环鸟苷酸的影响比受环腺苷酸(cyclic AMP)的影响更有效,并且鸟苷酸环化酶和磷酸二酯酶在该组织中具有活性。然而,尚未鉴定出改变龙虾肌肉环鸟苷酸水平的因子。我们已经筛选了神经和神经分泌结构的提取物,以寻找促进离体骨骼肌中环鸟苷酸积累的能力。窦腺(位于眼柄中的神经血器官)的提取物含有一种因子,可使肌肉中环鸟苷酸含量增加多达100倍,而其他组织的提取物则无效。该因子还可以作用于肌肉以外的其他靶标,肝胰腺、睾丸和神经元组织显示出最大的反应。窦腺因子似乎不会通过使制剂去极化或动员细胞外Ca2+来影响环鸟苷酸代谢。对环鸟苷酸水平的影响是剂量依赖性的,并且随时间呈线性关系。生物活性可通过煮沸和90%乙醇破坏。它也会被胰蛋白酶、胰凝乳蛋白酶或链霉蛋白酶破坏,这表明该因子是一种蛋白质或肽。凝胶过滤色谱法以及使用具有不同分子量排阻极限的透析管进行的实验均表明,该因子的表观分子量为5000 - 12000道尔顿。基于凝胶过滤、离子交换和反相色谱的初步分级分离方案可实现超过1300倍的纯化。我们的长期目标是将该因子纯化至同质,将其与其他肽激素进行比较,并将其用作探针来评估环鸟苷酸在神经肌肉接头处的作用。

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