Department of Marine Biology, Pukyong National University, Busan 608-737, South Korea.
Comp Biochem Physiol B Biochem Mol Biol. 2012 Mar;161(3):197-207. doi: 10.1016/j.cbpb.2011.11.005. Epub 2011 Nov 28.
Six cDNAs encoding chitinase proteins in Pandalopsis japonica were isolated by using polymerase chain reaction (PCR) cloning methods and bioinformatic analysis of expressed sequence tags (ESTs). The cDNAs, designated Pj-Cht1, 2, 3A, 3B, 3C, and 4, encoded proteins ranging from 388 to 607 amino acid residues in length (43.61-67.62kDa) and displayed a common structural organization: an N-terminal catalytic domain, a Thr/Pro-rich linker region, and either 0 (Pj-Cht2, 3A), 1 (Pj-Cht1, 3B, and 3C), or 2 (Pj-Cht4) C-terminal chitin-binding domain(s) (CBD). Pj-Cht1 and 2 lacked the 5' end of the open reading frame (ORF); the other Pj-Chts contained the complete ORF. All known decapod crustacean chitinases were segregated into at least four groups based on phylogenetic analysis and domain organization. Group 1 chitinases, represented by Pj-Cht1, were most closely related to insect group I chitinases and may function in the digestion of the peritrophic membrane. Group 2 chitinases including Pj-Cht2 show different domain organizations and pI value from other chitinases and appear to function in degradation of the old exoskeleton during the premolt period. Group 3 chitinases, represented by Pj-Cht3A, 3B, and 3C, may function in digestion of chitin-containing food and defense against pathogens. Group 4 chitinases, represented by Pj-Cht4, have two CBDs and their functions are unknown. Five Pj-Chts (Pj-Cht1, 3A, 3B, 3C, and 4) are expressed in the hepatopancreas and intestine, whereas Pj-Cht2 is expressed in epidermis and SG/XO complex suggesting crustacean chitinases can be classified into two groups (hepatopancreatic and epidermal) based on the expression profile. Eyestalk ablation (ESA) down-regulated the hepatopancreatic chitinase expression (Pj-Cht1, 3A, and 3C); Pj-Cht3B expression was not significantly affected by ESA. By contrast, mRNA levels of Pj-Cht2 were significantly upregulated in 7days post-ESA. Pj-Cht4 mRNA levels were too low for measurement with quantitative polymerase chain reaction. ESA had no significant effect on chitinase expression in the intestine. These data indicate that Pj-Cht1, 3A, 3B, 3C, and 4 are hepatopancreatic chitinases that may function in the digestion of ingested chitin and the modification of peritrophic membrane in the intestine. By contrast, epidermal chitinase, Pj-Cht2 may play a role in chitin metabolism during molt cycle as shown in other crustacean group 2 chitinases.
从日本沼虾(Pandalopsis japonica)的表达序列标签(EST)中,通过聚合酶链反应(PCR)克隆方法和生物信息学分析,分离到 6 个编码几丁质酶蛋白的 cDNA。这些 cDNA 分别命名为 Pj-Cht1、2、3A、3B、3C 和 4,编码的蛋白长度为 388 至 607 个氨基酸残基(43.61-67.62kDa),并显示出共同的结构组织:N 端催化结构域、Thr/Pro 丰富的连接区以及 0(Pj-Cht2、3A)、1(Pj-Cht1、3B 和 3C)或 2(Pj-Cht4)个 C 端几丁质结合结构域(CBD)。Pj-Cht1 和 2 缺乏开放阅读框(ORF)的 5'端;其他 Pj-Chts 含有完整的 ORF。基于系统发育分析和结构域组织,所有已知的十足甲壳动物几丁质酶被分为至少四个组。第一组几丁质酶,以 Pj-Cht1 为代表,与昆虫组 I 几丁质酶最为密切相关,可能在肠围膜的消化中发挥作用。第二组几丁质酶,包括 Pj-Cht2,表现出与其他几丁质酶不同的结构域组织和等电点,似乎在蜕皮前阶段旧外骨骼的降解中发挥作用。第三组几丁质酶,以 Pj-Cht3A、3B 和 3C 为代表,可能在含几丁质食物的消化和防御病原体中发挥作用。第四组几丁质酶,以 Pj-Cht4 为代表,有两个 CBD,其功能未知。五 Pj-Chts(Pj-Cht1、3A、3B、3C 和 4)在肝胰腺和肠道中表达,而 Pj-Cht2 在表皮和 SG/XO 复合体中表达,这表明甲壳动物几丁质酶可以根据表达谱分为两组(肝胰腺和表皮)。眼柄切除(ESA)下调肝胰腺几丁质酶表达(Pj-Cht1、3A 和 3C);ESA 对 Pj-Cht3B 的表达没有显著影响。相比之下,Pj-Cht2 的 mRNA 水平在 ESA 后 7 天显著上调。由于定量聚合酶链反应的限制,Pj-Cht4 的 mRNA 水平太低无法测量。ESA 对肠道中几丁质酶的表达没有显著影响。这些数据表明,Pj-Cht1、3A、3B、3C 和 4 是肝胰腺几丁质酶,可能在摄入的几丁质的消化和肠道中围食膜的修饰中发挥作用。相比之下,表皮几丁质酶 Pj-Cht2 可能在蜕皮周期中的几丁质代谢中发挥作用,就像其他甲壳动物组 2 几丁质酶一样。