Martillotti Anthony W, Tsai Pei-San
Department of Integrative Physiology, University of Colorado, Boulder, CO, United States.
Front Endocrinol (Lausanne). 2018 Aug 24;9:493. doi: 10.3389/fendo.2018.00493. eCollection 2018.
Adipokinetic hormone (AKH) is a multifunctional neuropeptide in the gonadotropin-releasing hormone superfamily. In insects, AKH acts to mobilize energy stores during times of high energetic demand, but has been shown to have other effects. In lophotrochozoans, the presence and function of AKH are less characterized. We have previously identified an AKH in an intertidal gastropod mollusk, the California sea hare (), and named it ac-AKH. Our previous data showed ac-AKH induced an acute weight loss, suggesting a role in volume regulation. The overarching goals of this study were to test the role of ac-AKH as a volume regulator and examine the mechanism by which ac-AKH induced the acute weight loss. Our results showed that ac-AKH reduced body mass, in part, through the reduction of hemolymph volume without altering hemolymph osmolality or specific osmolytes. The effect of ac-AKH on volume loss was accentuated under a hyposaline condition. We further showed that expression was inhibited during a hyposaline challenge, and that the administration of ac-AKH partially reversed the increase in body mass, but not hemolymph osmolality change, caused by the hyposaline challenge. These data collectively show that ac-AKH is a proximate regulator controlling the fluid volume, but not osmolality, in . Importantly, our results highlight the functional divergence of this structurally conserved neuropeptide in the molluscan lineage.
脂肪动激素(AKH)是促性腺激素释放激素超家族中的一种多功能神经肽。在昆虫中,AKH在能量需求高时发挥作用以调动能量储备,但已证明它还有其他作用。在冠轮动物中,AKH的存在和功能鲜为人知。我们之前在一种潮间带腹足纲软体动物——加州海兔()中鉴定出一种AKH,并将其命名为ac-AKH。我们之前的数据表明ac-AKH会导致体重急性减轻,这表明它在体积调节中发挥作用。本研究的总体目标是测试ac-AKH作为体积调节因子的作用,并研究ac-AKH导致急性体重减轻的机制。我们的结果表明,ac-AKH部分通过减少血淋巴体积来降低体重,而不改变血淋巴渗透压或特定的渗透溶质。在低盐条件下,ac-AKH对体积损失的影响更为明显。我们进一步表明,在低盐刺激期间 表达受到抑制,并且给予ac-AKH可部分逆转由低盐刺激引起的体重增加,但不能逆转血淋巴渗透压的变化。这些数据共同表明,ac-AKH是控制 中液体体积而非渗透压的直接调节因子。重要的是,我们的结果突出了这种结构保守的神经肽在软体动物谱系中的功能差异。