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Tat-Dependent Heterologous Secretion of Recombinant Tyrosinase by Pseudomonas fluorescens Is Aided by a Translationally Fused Caddie Protein

机译:Tat依赖异源分泌的荧光假单胞菌重组酪氨酸酶的翻译融合球童蛋白的帮助。

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Tyrosinase is a monooxygenase that catalyzes both the hydroxylation of p-hydroxyphenyl moieties to o-catechols and the oxidation of o-catechols to o-quinones. Apart from its critical functionality in melanogenesis and the synthesis of various neurotransmitters, this enzyme is also used in a variety of biotechnological applications, most notably mediating covalent cross-linking between polymers containing p-hydroxyphenyl groups, forming a hydrogel. Tyrosinases from the genus Streptomyces are usually secreted as a complex with their caddie protein. In this study, we report an increased secretion efficiency observed when the Streptomyces antibioticus tyrosinase gene melC2 was introduced into Pseudomonas fluorescens along with its caddie protein gene melC1, which has the DNA sequence for the Tat (twin-arginine translocation) signal.IMPORTANCE We observed that the S. antibioticus extracellular tyrosinase secretion level was even higher in its nonnatural translationally conjugated fusion protein form than in the natural complex of two separated polypeptides. The results of this study demonstrate that tyrosinase-expressing P. fluorescens can be a stable source of bacterial tyrosinase through exploiting the secretory machinery of P. fluorescens.
机译:酪氨酸酶是一种单加氧酶,既催化对羟苯基部分的羟基化为邻苯二酚,又催化邻苯二酚的氧化为邻醌。除了在黑色素生成和各种神经递质的合成中的关键功能外,该酶还用于多种生物技术应用中,最值得注意的是介导含有对羟基苯基的聚合物之间的共价交联,形成水凝胶。链霉菌属的酪氨酸酶通常与球童蛋白复合分泌。在这项研究中,我们报告了将链霉菌酪氨酸酶基因melC2与其荧光童蛋白基因melC1一起引入荧光假单胞菌中时观察到的分泌效率提高,该基因具有Tat(双精氨酸易位)信号的DNA序列。非抗生素翻译缀合融合蛋白形式的抗生素链球菌胞外酪氨酸酶分泌水平甚至比两个分离的多肽的天然复合物更高。这项研究的结果表明,表达酪氨酸酶的荧光假单胞菌可以通过利用荧光假单胞菌的分泌机制而成为细菌酪氨酸酶的稳定来源。

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