Institute of Marine and Environmental Technology, University of Maryland Center for Environmental Science, Columbus Center, 701 E. Pratt Street, Baltimore, MD 21202, USA.
Fish Shellfish Immunol. 2013 Nov;35(5):1349-58. doi: 10.1016/j.fsi.2013.07.041. Epub 2013 Aug 20.
The arthropods cuticle undergoes dramatic morphological and biochemical changes from being soft to hardness through each molting process. Prophenoloxidase (PPO) known as a key enzyme in the arthropod innate immune system involved in the melanization reaction, has been related with the initial shell-hardening process, specifically in the sclerotization of the protein matrix in the new cuticle. Since hemocytes have been reported as the main PPO source in arthropods, the transport of hemocyte PPO into the newly laid, soft cuticle has been proposed for shell-hardening occurring during and immediately after ecdysis. In order to define the role of hemocyte PPO in the shell-hardening of crustaceans, the full-length cDNA sequence (2806 nt) of hemocytes PPO of the blue crab Callinectes sapidus (CasPPO-hemo) is isolated using degenerate PCR and 5'-3' RACE. CasPPO-hemo encodes a putative PPO (672 aa) showing three hemocyanin domains: N, M, and C in order and two copper binding sites (CuA & CuB). The sequence analysis identifies the putative CasPPO-hemo as zymogen which requires the cleavage at the N-terminus for its activation. Hemocyte extract (CasHLS) contains the PO, the activity of which depends on the in vitro activation of trypsin. The expression levels of CasPPO-hemo are kept constant during the molt cycle. The increase in the number of hemocytes at early premolt correlates with the elevated PO activity, while at late premolt, the increment in hemocyte numbers does not reflect on the PO activity. The functional importance of the changes in the levels of CasHLS-PO activity during molt cycle is discussed in relation to cuticle hardening process.
节肢动物的外骨骼在每次蜕皮过程中经历着剧烈的形态和生化变化,从柔软变为坚硬。原酚氧化酶(PPO)作为节肢动物先天免疫系统中的关键酶,参与了黑化反应,与初始壳硬化过程有关,特别是在新外骨骼的蛋白质基质的骨化过程中。由于血细胞已被报道为节肢动物中 PPO 的主要来源,因此提出了血细胞 PPO 向新铺设的柔软外骨骼中的运输,以实现蜕皮过程中和蜕皮后立即发生的壳硬化。为了确定血细胞 PPO 在甲壳类动物壳硬化中的作用,使用简并 PCR 和 5'-3' RACE 分离了蓝蟹 Callinectes sapidus(CasPPO-hemo)血细胞 PPO 的全长 cDNA 序列(2806nt)。CasPPO-hemo 编码一个假定的 PPO(672aa),显示三个血蓝蛋白结构域:N、M 和 C 按顺序排列,以及两个铜结合位点(CuA 和 CuB)。序列分析确定了假定的 CasPPO-hemo 为酶原,其需要在 N 端切割才能激活。血细胞提取物(CasHLS)含有 PO,其活性依赖于胰蛋白酶的体外激活。在蜕皮周期中,CasPPO-hemo 的表达水平保持不变。早期预蜕皮时血细胞数量的增加与 PO 活性的升高相关,而在晚期预蜕皮时,血细胞数量的增加并不反映 PO 活性。讨论了蜕皮周期中 CasHLS-PO 活性水平变化与外骨骼硬化过程的关系,以探讨其功能重要性。