首页> 外文期刊>Journal of Insect Physiology >Investigations of the signaling cascade involved in diuretic hormone stimulation of Malpighian tubule fluid secretion in Rhodnius prolixus
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Investigations of the signaling cascade involved in diuretic hormone stimulation of Malpighian tubule fluid secretion in Rhodnius prolixus

机译:利多生红景天刺激马尔皮基小管分泌液利尿激素刺激的信号级联反应的研究

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In insects, the excretory system is comprised of the Malpighian tubules (MTs) and the hindgut, which collectively function to maintain ionic and osmotic balance of the haemolymph and rid the organism of toxic compounds or elements in excess. Secretionby the Malpighian tubules of insects is regulated by a variety of hormones including peptidergic factors as well as biogenic amines. In Rhodnius prolixus, two endogenous diuretic hormones have been identified; the biogenic amine serotonin (5-hydroxytryptamine, 5-HT) and the corticotropin releasing factor-related peptide, RhoprCRF. Both factors significantly increase secretion by MTs and are known to elevate intracellular levels of cAMP. Interestingly, applying sub-maximal doses of these two diuretic factors in combination on isolated MTs in vitro reveals synergistic effects as rates of fluid secretion are significantly higher than would be expected if rates of secretion from MTs treated with each factor alone were summed. This observed synergism suggests that different downstream targets may be activated by the two diuretic factors, but that some cellular elicitors may be shared since cAMP is elevated in response to either diuretic hormone. This study investigated the signaling cascade involved in the diuretic hormone regulation of Malpighian tubule fluid secretion. Bioassays were performed in physiological as well as modified salines (e.g. calcium-free) alone or in the presence of a variety of pharmacological compounds that interfere with prospective intracellular targets, such as the apical cation/H+ exchanger. Intriguingly, only amiloride yielded differential effects on the two diuretics with 5HT-stimulated secretion being blocked, whereas in contrast, RhoprCRF-stimulated secretion was unaffected. In addition, experiments examining the role of extracellular and intracellular calcium on fluid secretion rate showed that both diuretics are dependent on intracellular calcium availability. Finally, fluid secretion stimulated by either diuretic hormone was also sensitive to inhibition of cAMP-dependent protein kinase A. Taken together, these results suggest that each diuretic hormone activates pathways dependent upon intracellular calcium and cAMP.
机译:在昆虫中,排泄系统由Malpighian小管(MTs)和后肠组成,它们共同起到维持血淋巴的离子和渗透平衡的作用,并消除生物体内过量的有毒化合物或元素。昆虫的马尔皮基小管的分泌受到多种激素的调节,这些激素包括肽能因子以及生物胺。在Rhodnius prolixus中,已鉴定出两种内源性利尿激素。生物胺5-羟色胺(5-羟色胺,5-HT)和促肾上腺皮质激素释放因子相关肽RhoprCRF。两种因子均会显着增加MT的分泌,并且已知会提高细胞内cAMP的水平。有趣的是,在分离的MTs上联合使用这两种利尿因子的次最大剂量显示出协同作用,因为液体分泌的速率明显高于单独使用每种因子治疗的MTs的分泌速率之和。这种观察到的协同作用表明,两种利尿因子可能激活了不同的下游靶标,但是由于cAMP响应任一利尿激素而升高,因此可能共享了一些细胞引发剂。这项研究调查了参与Malpighian小管液分泌的利尿激素调节的信号级联反应。仅在生理盐水和改良盐水(例如,无钙)中或在干扰预期细胞内靶标的多种药理化合物(例如顶端阳离子/ H +交换剂)存在下进行生物测定。有趣的是,只有阿米洛利对两种利尿剂产生了不同的作用,但阻止了5HT刺激的分泌,而与此相反,RhoprCRF刺激的分泌却不受影响。此外,检查细胞外钙和细胞内钙对液体分泌率的作用的实验表明,两种利尿剂都依赖于细胞内钙的利用率。最后,两种利尿激素刺激的体液分泌对cAMP依赖性蛋白激酶A的抑制也很敏感。总而言之,这些结果表明每种利尿激素均激活依赖于细胞内钙和cAMP的途径。

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