Cheng Winton, Ka Ya-Wen, Chang Chin-Chyuan
Department of Aquaculture, National Pingtung University of Science and Technology, Pingtung, 91201, Taiwan, ROC.
Department of Aquaculture, National Pingtung University of Science and Technology, Pingtung, 91201, Taiwan, ROC.
Fish Shellfish Immunol. 2016 Dec;59:166-178. doi: 10.1016/j.fsi.2016.10.036. Epub 2016 Oct 25.
Dopamine beta-hydroxylase (DBH) plays a critical role in catecholamine (CA) synthesis of neuroendocrine regulatory network, and is suggested to be involved in the immunoendocrine responses of invertebrate against bacterial challenge. DBH has been identified in white shrimp, Litopenaeus vannamei, and further investigation on its potential function was conducted after hypothermal stress, pharmaceutical inhibition and gene silencing in the present study. Cloned DBH L. vannamei (LvDBH), belonging to the Copper type II, ascorbate-dependent monooxygenases, was characterized by a DOMON domain, a Cu2_monooxygen domain and three glycosylation sites, and its expression was abundant in thoracic ganglia and haemocytes determined by quantitative real-time PCR. The effects of hypothermal stress showed that LvDBH expression in thoracic ganglia, haemocytes and hepatopancreas as well as the DBH contents in haemocytes and dopamine (DA) and norepinephrine (NE) levels in haemolymph are obviously up-regulated. L. vannamei receiving disulfiram for 30-120 min revealed the inhibition of DBH and NE contents in haemocytes and haemolymph respectively, but high level of DA in haemolymph was noticed. Besides, a significant decrease of LvDBH expression in thoracic ganglia, haemocytes and hepatopancreas were also observed. Subsequently, LvDBH expression was successfully silenced in thoracic ganglia, haemocytes and hepatopancreas of shrimp that received LvDBH-dsRNA for 3 days, and meanwhile, a decrease of DBH contents in haemocytes accompanied by decreased levels of NE and DA in haemolymph were also observed. These results indicate that LvDBH possesses the functional domains responsible for CAs synthesis, and therefore, inhibiting DBH contents in haemocytes by disulfiram and by LvDBH-dsRNA resulted in the impaired synthesis of NE from DA in haemolymph. These also suggest that the increased release of DA and NE in haemolymph for potential modulation of physiological or immunological responses is the consequence of the upregulated LvDBH expression and DBH contents in L. vannamei exposed to hypothermal stress.
多巴胺β-羟化酶(DBH)在神经内分泌调节网络的儿茶酚胺(CA)合成中起关键作用,并且被认为参与无脊椎动物对细菌攻击的免疫内分泌反应。在凡纳滨对虾中已鉴定出DBH,在本研究中,对其进行低温胁迫、药物抑制和基因沉默后,进一步研究了其潜在功能。克隆的凡纳滨对虾DBH(LvDBH)属于铜II型、抗坏血酸依赖性单加氧酶,其特征在于具有一个DOMON结构域、一个Cu2_单加氧结构域和三个糖基化位点,通过定量实时PCR确定其在胸神经节和血细胞中表达丰富。低温胁迫的影响表明,胸神经节、血细胞和肝胰腺中的LvDBH表达以及血细胞中的DBH含量以及血淋巴中的多巴胺(DA)和去甲肾上腺素(NE)水平均明显上调。接受双硫仑处理30 - 120分钟的凡纳滨对虾分别显示出血细胞和血淋巴中DBH和NE含量受到抑制,但血淋巴中DA水平较高。此外,还观察到胸神经节、血细胞和肝胰腺中LvDBH表达显著下降。随后,在接受LvDBH-dsRNA处理3天的对虾的胸神经节、血细胞和肝胰腺中成功沉默了LvDBH表达,同时,还观察到血细胞中DBH含量下降,伴随着血淋巴中NE和DA水平降低。这些结果表明,LvDBH具有负责CA合成的功能结构域,因此,双硫仑和LvDBH-dsRNA抑制血细胞中的DBH含量导致血淋巴中DA合成NE受损。这些还表明,暴露于低温胁迫的凡纳滨对虾中,血淋巴中DA和NE释放增加以潜在调节生理或免疫反应是LvDBH表达上调和DBH含量增加的结果。