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Discovery and characterization of tyrosinases from sea anemone pedal disc

机译:海葵踏板椎间盘尖端酪氨酸酶的发现与表征

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摘要

The formation of underwater adhesion is a complicated physiological process and many different types of enzymes are found to be essential apart from structural proteins. Previous studies have shown that various tyrosinases were present in marine adhesives, but little information is available about the over-expression and enzymatic characterization of these enzymes. Specifically, this study first identified four significantly up-regulated tyrosinases in the pedal disc of Haliplanella luciae by means of multi-omics technology, and made preliminary bioinformatics predictions. Sequence alignment showed that the Tyr1_Hl contained six conserved His residues that bind to copper ions, of which a tyrosinase with diphenolase activity named as Tyr1_Hl(Delta), was expressed in Escherichia coli BL21 (DE3) cells and purified by affinity chromatography. Enzymatic characterization showed that the activity of Tyr1_Hl(Delta) was Cu2+ dependent and maximum catalytic activities were in 20 mM Tris-HCl (pH 8.0) at 37 degrees C. In summary, we identified novel tyrosinases in the pedal disks of sea anemone for the first time and the Tyr1_Hl(Delta) was successfully recombinant expressed. Our study will provide basis for future exploration of bio-adhesion mechanism and design of bio-adhesives derived from sea anemones.
机译:水下粘附的形成是一个复杂的生理过程,除了结构蛋白外,许多不同类型的酶都是必不可少的。以前的研究表明,海洋粘接剂中存在多种酪氨酸酶,但关于这些酶的过度表达和酶学特性的信息很少。具体而言,本研究首次通过多组学技术在灵芝踏板盘中鉴定出四种显著上调的酪氨酸酶,并进行了初步的生物信息学预测。序列比对显示,Tyr1_-Hl含有六个与铜离子结合的保守His残基,其中一种具有二烯醇化酶活性的酪氨酸酶命名为Tyr1_-Hl(Delta),在大肠杆菌BL21(DE3)细胞中表达并通过亲和层析纯化。酶学表征表明,Tyr1_-Hl(Delta)的活性依赖于Cu2+,在37℃的20 mM Tris-HCl(pH 8.0)中具有最大催化活性。总之,我们首次在海葵的踏板盘中发现了新的酪氨酸酶,并成功重组表达了Tyr1_-Hl(Delta)。本研究将为进一步探索海葵生物粘附机理和设计海葵生物粘合剂提供依据。

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