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Molecular Cloning of a Chitinase Gene from the Ovotestis of Kuroda’s Sea Hare Aplysia kurodai
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作者 Gaku Matsunaga Syuuji Karasuda +2 位作者 Ryo Nishino Hideto Fukushima Masahiro Matsumiya 《Advances in Bioscience and Biotechnology》 2016年第1期38-46,共9页
In this study, we report that we successfully cloned and sequenced a chitinase gene from the ovotestis of Kuroda’s sea hare Aplysia kurodai. By using reverse transcription-polymerase chain reaction (RT-PCR) and a sys... In this study, we report that we successfully cloned and sequenced a chitinase gene from the ovotestis of Kuroda’s sea hare Aplysia kurodai. By using reverse transcription-polymerase chain reaction (RT-PCR) and a system for the 5’ and 3’ rapid amplification of cDNA ends, we obtained a 1352 bp chitinase gene (AkChi) from the ovotestis of A. kurodai. AkChi contains a 1263 bp open reading frame that encodes 421 amino acids. The domain structure predicted from the deduced amino acid sequence was an N-terminal signal peptide and a catalytic domain of glycoside hydrolase (GH) family 18 chitinase. A comparative analysis of the deduced amino acid sequences of AkChi with those of the acidic mammalian chitinase of the California sea hare Aplysia californica revealed the highest homology at 83%. The purified chitinase from the ovotestis was digested by trypsin, and 119 residues of digested peptides were consistent with the deduced amino acid sequence of AkChi. We used RT-PCR to evaluate the expression of AkChi in various tissues of A. kurodai, and we observed that AkChi was expressed only in the ovotestis. A phylogenetic tree analysis, performed using the amino acid sequences of AkChi and known GH family 18 chitinases, showed that AkChi was separated from the molluscan chitinases with a chitin binding domain. To our knowledge, this is the first study demonstrating the cDNA cloning of an ovotestis chitinase from a sea hare. 展开更多
关键词 CHITINASE Molecular Cloning Kuroda’s Sea Hare Aplysia kurodai MOLLUSC OVOTESTIS Phylogenetic Tree Analysis
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海洋抗肿瘤活性大环内酯类化合物化学成分研究近况 被引量:2
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作者 釜野德明 张惠平 《天然产物研究与开发》 CAS CSCD 1992年第3期48-72,共25页
最近,人们已从多种海洋生物中发现许多具有应用价值的生理活性物质。其中,抗肿瘤活性物质的开发研究尤为盛行。目前,人们已经分离得到许多在体内试验中具有明显抗肿瘤活性的化合物,并且确立了它们的化学结构,其中包括类萜类化合物、生物... 最近,人们已从多种海洋生物中发现许多具有应用价值的生理活性物质。其中,抗肿瘤活性物质的开发研究尤为盛行。目前,人们已经分离得到许多在体内试验中具有明显抗肿瘤活性的化合物,并且确立了它们的化学结构,其中包括类萜类化合物、生物碱,肽类化合物、大环内酯类化合物、类前列腺素化合物、聚醚类化合物等。其中,已有数种大环内酯类化合物很有可能作为抗癌药物进入临床。bryostatin 1则是它们的代表性化合物之一。目前,美国National Cancer Instituie已经开始对该化合物进行临床研究。它是由作者(釜野)研究小组在美国亚利桑拿州立大学癌研究所开发研究出的一种新型化合物,经过进一步研究又分离得到了bryostatin 2(24)~13(35),并确立了它们的化学结构。因此,本文将对bryostatin类化合物的化学性质以及其生理活性作详细地综述。另外,还将论述halichondrin类化合物(14~21)和Aplyronine(22)。它们是最近几年在日本发现的,在体内试验中具有很强的抗肿瘤活性的一系列新型化合物。再者,本文还将概述其它一些重要的、具有抗肿瘤活性的大环内酯类化合物,即aplysiatoxin(Ia~Ic), latrunculinA(2), acutiphycin(3),tedanolide(4), swinholide A(5), bistheonellde A(7a), amphicinolides(8~10), kabiramides(11a 11e), ulapualide(12a, 12b)以及patellazole B(13)。 展开更多
关键词 抗肿瘤活性 海洋天然产物 大环内酯
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