Øvergård Aina-Cathrine, Eichner Christiane, Nilsen Frank, Dalvin Sussie
SLCR-Sea Lice Research Center, Institute of Marine Research, 5817 Bergen, Norway; SLCR-Sea Lice Research Center, Department of Biology, University of Bergen, Thormøhlensgt. 55, 5008 Bergen, Norway.
SLCR-Sea Lice Research Center, Department of Biology, University of Bergen, Thormøhlensgt. 55, 5008 Bergen, Norway.
Comp Biochem Physiol A Mol Integr Physiol. 2017 Apr;206:1-10. doi: 10.1016/j.cbpa.2017.01.004. Epub 2017 Jan 11.
Heme peroxidases are the most abundant type of peroxidase catalyzing a HO-dependent oxidation of a wide variety of substrates. They are involved in numerous processes like the innate immune response, hormone and prostaglandin synthesis and crosslinking of proteins within extracellular matrixes (ECM) as well as molecules within the cuticle and chorion of arthropods and nematodes. In the present study, a Lepeophtheirus salmonis heme peroxidase (LsHPX) 1 was characterized. Amino acids in the active site of heme peroxidases were conserved, and the predicted protein sequence showed the highest similarity to genes annotated as chorion peroxidases and genes suggested to be involved in cuticle hardening or adhesion. LsHPX1 exhibited a dynamic expression during ontogenesis and during the nauplius molting cycle. Transcripts were localized to muscle cells near the muscle-tendon junction, in nerve tissue especially at neuromuscular junctions, subcuticular epithelium, subepithelial cells facing the hemolymph, exocrine glands within the subepithelial tissue and in isolated cells within the testis. Knock-down of LsHPX1 in nauplius larvae decreased the swimming activity of emerging copepodids. Histological analysis of knock-down animals revealed increased spacing between myofibers and changes in subepithelial and exocrine gland tissue. Considering these results, the potential role of LsHPX1 in crosslinking molecules of salmon louse ECMs is discussed.
血红素过氧化物酶是最丰富的过氧化物酶类型,催化多种底物的依赖于过氧化氢的氧化反应。它们参与许多过程,如先天免疫反应、激素和前列腺素合成、细胞外基质(ECM)内蛋白质的交联以及节肢动物和线虫角质层和绒毛膜内分子的交联。在本研究中,对鲑鱼虱血红素过氧化物酶(LsHPX)1进行了表征。血红素过氧化物酶活性位点的氨基酸是保守的,预测的蛋白质序列与注释为绒毛膜过氧化物酶的基因以及被认为参与角质层硬化或黏附的基因具有最高的相似性。LsHPX1在个体发育过程和无节幼体蜕皮周期中表现出动态表达。转录本定位于肌腱连接处附近的肌肉细胞、神经组织中尤其是神经肌肉连接处、皮下上皮、面向血淋巴的上皮下细胞、上皮下组织内的外分泌腺以及睾丸内的分离细胞。无节幼体幼虫中LsHPX1的敲低降低了新出现的桡足幼体的游泳活动。对敲低动物的组织学分析显示肌纤维之间的间距增加以及上皮下和外分泌腺组织的变化。考虑到这些结果,讨论了LsHPX1在鲑鱼虱ECM分子交联中的潜在作用。