软骨鱼几丁质酶:分子克隆、分布和系统发育分析

Miku Watanabe, H. Kakizaki, M. Kanai, S. Kawashima, K. Hamaguchi, Hiroki Mizuno, T. Ueno, Chiaki Yasukawa, Ryuji Agata, Mana Ikeda, H. Fukushima, M. Ueda, M. Matsumiya
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引用次数: 0

摘要

我们之前已经报道了在放线菌中存在三种类型的几丁质酶(酸性鱼几丁质酶-1:AFCase-1,酸性鱼几丁质蛋白酶-2:AFCase-2,鱼几丁质酶-3:FCase-3)。在本研究中,我们分别从软骨鱼类、日本牛头鲨(Heterodontus japonicas)和广东旱獭(Dipturus kwangtungensis)的胃中鉴定了新的几丁质酶基因HjChi(ORF:1380 bp)和DkChi(OR F:1440 bp)。器官特异性表达分析确定HjChi的胃特异性表达,而DkChi在所有器官中广泛表达。以pNP-(GlcNAc)n(n=2,3)为底物测定几丁质酶活性,以pNP-GlcNAc测定β-n-乙酰己糖胺酶(Hex)活性。在日本牛头鲨的胃、脾脏和性腺中观察到的几丁质酶活性与在广东鳐的胃中观察到相比具有相对较高的值。然而,在这两个物种的全身都检测到了Hex活性。日本牛头鲨(H.japonica)和广东鳐(D.kwangtungensis)的几丁质酶最适pH分别为3.5-5.5和3.5-4.0,Hex的最适pH均为4.0。系统发育分析表明,软骨藻几丁质酶形成了一个独特的类群(软骨藻几丁质蛋白酶)。这些结果表明,在基于类特异性几丁质酶观察的系统发育分析中,每个类都有可能形成几丁质酶基团。
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Chondrichthyes Chitinase: Molecular Cloning, Distribution, and Phylogenetic Analysis
We have previously reported the presence of three types of chitinase (acidic fish chitinase-1: AFCase-1, acidic fish chitinase-2: AFCase-2, fish chitinase-3: FCase-3) in Actinopterygii. In the present research, we report the identification of the novel chitinase genes HjChi (ORF: 1380 bp) and DkChi (ORF: 1440 bp) from the stomach of Chondrichthyes, Japanese bullhead shark (Heterodontus japonicas) and Kwangtung skate (Dipturus kwangtungensis), respectively. Organ-specific expression analysis identified the stomach-specific expression of HjChi, whereas DkChi was expressed widely in all organs. Chitinase activity was measured using pNP-(GlcNAc)n (n = 2, 3) as a substrate and β-N-acetylhexosaminidase (Hex) activity was measured using pNPGlcNAc. Relatively high values of chitinase activity were observed in the stomach, spleen, and gonads of the Japanese bullhead shark, H. japonicas , compared with that observed in the stomach of the Kwangtung skate D. kwangtungensis . However, Hex activity was detected throughout the body of both species. The optimal pH of chitinase in both the Japanese bullhead shark, H. japonicas, and the Kwangtung skate, D. kwangtungensis, were 3.5 - 5.5 and 3.5 - 4.0, respectively, and 4.0 for Hex in both species. Phylogenetic analysis revealed that Chondrichthyes chitinase forms a unique group (Chondrichthyes chitinase). These results suggested that the possibility of the formation of chitinase groups for each class in the phylogenetic analysis based on the observation of class-specific chitinase.
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