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首页> 外文期刊>Biochimica et biophysica acta. Molecular cell research >Cyclic AMP mediates the elevation of proline by AKH peptides in the cetoniid beetle, Pachnoda sinuata
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Cyclic AMP mediates the elevation of proline by AKH peptides in the cetoniid beetle, Pachnoda sinuata

机译:循环AMP通过AKH肽介导了乙状体甲虫Pachnoda sinuata中脯氨酸的升高。

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The role of cyclic nucleotides in the transduction of the hyperprolinaemic and hypertrehalosaemic signal of the endogenous neuropeptide Mem-CC was investigated in the cetoniid beetle Pachnoda sinuata. Flight and injection of Mem-CC into the haemocoel of the beetle induce an increase of cAMP levels in the fat body of the beetle. This increase is tissue-specific and does not occur in brain and flight muscles. an elevation of cAMP levels was also found when in vitro preparations of fat body tissue were subjected to Mem-CC. Elevation of the cAMP concentration after injection of Mem-CC is time- and dosedependent: the maximum response is measured after 1 min, and a dose of 25 pmol Mem-CC is needed. injection of cpt-cAMP, a cAMP analogue which penetrates the cell membrane, causes a stimulation of proline synthesis but no mobilisation of carbohydrate reserves. The same is measured when IBMX, an inhibitor of phosphodiesterase, is injected. cGMP seems not to be involved in synthesis of proline nor carbohydrate release, because injection of cpt-cGMP has no influence on the levels of proline, alanine and carbohydrates in the haemolymph. Although glycogen phosphorylase of the fat body is activated by Mem-CC in a time- and dose-dependent manner, it cannot stimulated by cpt-cAMP. The combined data suggest that cAMP is involved in regulation of proline levels by Mem-CC but not in regulation of carbohydrates. Octopamine has no effect on metabolites in the haemolymph and is not capable of activating glycogen phosphorylase, indicating that it is not involved in the regulation of substrates in this beetle. Furthermore, the requirements of the receptor of Mem-CC are different for eliciting a hypertrehalosaemic and a hyperprolinaemic effect, respectively, suggesting that differentiation in signal transduction begins at the receptor level.
机译:在鲸类甲虫Pachnoda sinuata中研究了环状核苷酸在内源性神经肽Mem-CC的高脯氨酸和超海藻糖信号转导中的作用。 Mem-CC的飞行和注射到甲虫的血细胞中会导致甲虫脂肪体内的cAMP水平升高。这种增加是组织特异性的,不会出现在大脑和飞行肌肉中。当体外制备脂肪组织组织进行Mem-CC时,也发现cAMP水平升高。注射Mem-CC后,cAMP浓度的升高与时间和剂量有关:最大反应在1分钟后测量,需要25 pmol Mem-CC的剂量。 cpt-cAMP(一种穿透细胞膜的cAMP类似物)的注射可刺激脯氨酸合成,但不会动员碳水化合物储备。注射磷酸二酯酶抑制剂IBMX时,测量结果相同。 cGMP似乎不参与脯氨酸的合成或碳水化合物的释放,因为注射cpt-cGMP不会影响血淋巴中脯氨酸,丙氨酸和碳水化合物的水平。尽管肥胖分子的糖原磷酸化酶被Mem-CC激活,呈时间和剂量依赖性,但不能被cpt-cAMP刺激。综合数据表明,cAMP参与Mem-CC调节脯氨酸水平,但不参与碳水化合物的调节。章鱼胺对血淋巴中的代谢产物没有影响,并且不能激活糖原磷酸化酶,表明它不参与这种甲虫底物的调节。此外,Mem-CC受体分别引起高丘脑和高脯氨酸作用的要求不同,这表明信号转导的分化始于受体水平。

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