高海藻素和脂肪动力学肽对盘状小蠊成虫的生理作用

L.L. Keeley, T.K. Hayes, J.Y. Bradfield, S.M. Sowa
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引用次数: 35

摘要

脂肪动力学激素/红色色素浓缩激素(AKH/RPCH)家族成员的特征是引起昆虫脂肪体的代谢物动员。本研究发现,在合成的高海藻素(HTH)和其他AKH/RPCH家族肽的影响下,盘状小蠊成虫的一些生理活动受到影响。HTH使血碳水化合物增加4倍,使脂肪体线粒体细胞色素血红素a + b合成增加3倍。碳水化合物和血红素合成对HTH均有剂量反应。碳水化合物合成对HTH的敏感性是血红素合成的10倍。在试验剂量下,大蠊心加速激素(CAH)-I和-II和RPCH也能刺激血红素合成,但AKH-I或-II不能。HTH表现出强烈的心脏兴奋活性。以2.6倍的分泌脂肪体蛋白合成速率刺激幼年激素类似物(JHA = methoprene)长期治疗被斩首的盘盘小蠊雌性。与单独使用JHA相比,HTH使JHA依赖的输出蛋白合成提高了42%。SDS-PAGE证实JHA决定了新合成多肽的性质;HTH提高了它们的合成速度。当直接添加到分离脂肪体时,AKH-I和HTH都不影响蛋白质合成。这些结果表明,AKH/RPCH家族肽具有多种与脂肪体能量代谢相关的生理作用。
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Physiological actions by hypertrehalosemic hormone and adipokinetic peptides in adult Blaberus discoidalis cockroaches

Members of the adipokinetic hormone/red pigment-concentrating hormone (AKH/RPCH) family characteristically cause metabolite mobilization by the insect fat body. The present study identified several additional physiological actions in adult Blaberus discoidalis cockroaches that were influenced by synthetic Blaberus hypertrehalosemic hormone (HTH) and other AKH/RPCH family peptides. HTH elevated blood carbohydrate by 4-fold and cytochrome heme a + b synthesis of fat body mitochondria by 3-fold. Both carbohydrate and heme synthesis were dose-responsive to HTH. Carbohydrate synthesis was 10 times more sensitive to HTH than heme synthesis. Heme synthesis was also stimulated by Periplaneta cardioacceleratory hormones (CAH)-I and -II and RPCH but not by AKH-I or -II, at the doses tested. HTH showed strong cardioexcitatory activity. Long-term treatment of decapitated female B. discoidalis with juvenile hormone analog (JHA = methoprene) stimulated by 2.6-fold the rate of synthesis of secreted fat body proteins. HTH enhanced the JHA-dependent export protein synthesis by 42% above that observed with JHA alone. SDS-PAGE demonstrated that JHA determined the nature of the newly synthesized polypeptides; HTH enhanced their synthesis rate. Neither AKH-I nor HTH affected protein synthesis when added directly to isolated fat body. These results demonstrate that peptides of the AKH/RPCH family have multiple physiological actions related to fat body energy metabolism.

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