Tianjin Normal University, Tianjin 300387, China.
Mol Biol Rep. 2011 Mar;38(3):1861-8. doi: 10.1007/s11033-010-0303-z. Epub 2010 Sep 19.
Cathepsin B is one of the most important proteolytic enzymes involved in the nutrient metabolism of clam Meretrix meretrix. The recombinant fusion protein GST-MmeCB (rGST-MmeCB) was obtained at a high level from Escherichia coli and identified using LC-ESI-MS/MS. The GST tag was cleaved from rGST-MmeCB, and the resulting recombinant MmeCB (rMmeCB) was able to degrade the selective substrate carbobenzoxy-L-arginyl-L-arginyl-7-amino-4-trifluoromethylcoumarin (Z-Arg-Arg-AFC) in vitro. The kinetic parameters of the rMmeCB were calculated as follows: K (m), V(max) and k (cat) are 6.11 μM, 0.0174 μM min(-1) and 277.57 s(-1), respectively. Rabbit anti-rGST-MmeCB polyclonal antibodies was prepared and used to analyze the tissue distribution of MmeCB protein in M. meretrix. The results showed that the highest level of cathepsin B was found in the digestive gland and moderate levels were found in gill and mantle. Similar expression patterns were found at the mRNA level as detected by real time PCR. Further analysis showed that starvation caused a slight increase in MmeCB protein synthesis in the digestive gland, while refeeding after starvation caused an apparent increase in MmeCB synthesis in digestive gland, gill and mantle. Real time PCR analysis showed that MmeCB mRNA in digestive gland was significantly up-regulated by starvation and returned to normal level after the starved clams were refed. Together, these results indicated that cathepsin B is probably involved in the nutrient digestion of M. meretrix.
组织蛋白酶 B 是参与中国蛤蜊(Meretrix meretrix)营养代谢的最重要的蛋白水解酶之一。从大肠杆菌中高水平获得重组融合蛋白 GST-MmeCB(rGST-MmeCB),并通过 LC-ESI-MS/MS 进行鉴定。从 rGST-MmeCB 中切除 GST 标签,得到的重组 MmeCB(rMmeCB)能够在体外降解选择性底物苯甲酰-L-精氨酰-L-精氨酰-7-氨基-4-三氟甲基香豆素(Z-Arg-Arg-AFC)。rMmeCB 的动力学参数计算如下:K (m)、V(max) 和 k (cat) 分别为 6.11 μM、0.0174 μM min(-1) 和 277.57 s(-1)。制备了兔抗 rGST-MmeCB 多克隆抗体,并用于分析 M. meretrix 中 MmeCB 蛋白的组织分布。结果表明,消化腺中组织蛋白酶 B 的含量最高,鳃和套膜中含量中等。实时 PCR 检测到的 mRNA 水平也显示出相似的表达模式。进一步分析表明,饥饿导致消化腺中 MmeCB 蛋白合成略有增加,而饥饿后再投喂则导致消化腺、鳃和套膜中 MmeCB 合成明显增加。实时 PCR 分析表明,饥饿导致消化腺中 MmeCB mRNA 显著上调,饥饿蛤蜊再投喂后恢复正常水平。综上所述,这些结果表明组织蛋白酶 B 可能参与了中国蛤蜊的营养消化。