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Novel enzyme-polymer conjugates for biotechnological applications

机译:用于生物技术应用的新型酶聚合物缀合物

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摘要

In the present research, a rapid, simple and efficient chemoselective method for the site-directed incorporation of tailor-made polymers into protein to create biocatalysts with excellent properties for pharmaceutical industrial purpose has been performed. First we focused on the protein engineering of the Geobacillus thermocatenulatus lipase 2 (BTL2) to replace the two cysteines (Cys65, Cys296) in the wild type enzyme (BTL-WT) by two serines. Then, by similar mode, a unique cysteine was introduced in the lid area of the protein. For the site-directed polymer incorporation, a set of different tailor-made thiol-ionic-polymers were synthesized and the protein cysteine was previously activated with 2,2-dithiodipyridine (2-PDS) to allow the disulfide exchange. The protected BTL variants were specifically modified with the different polymers in excellent yields, creating a small library of new biocatalysts. Different and important changes in the catalytic properties, possible caused by structural changes in the lid region, were observed. The different modified biocatalysts were tested in the synthesis of intermediates of antiviral and antitumor drugs, like nucleoside analogues and derivatives of phenylglutaric acid. In the hydrolysis of per-acetylated thymidine, the best biocatalyst was the BTL*-193-DextCOOH , where the activity was increased in 3-fold and the regioselectivity was improved, reaching a yield of 92% of 3’-O-acetyl-thymidine. In the case of the asymmetric hydrolysis of dimethyl phenylglutarate, the best result was found with BTL*-193-DextNH2-6000, where the enzyme activity was increased more than 5-fold and the enantiomeric excess was >99%.
机译:在本研究中,已经进行了一种快速,简单和有效的化学选择性方法,用于将特制的聚合物定点掺入蛋白质中,以产生具有优异性能的生物催化剂,用于制药工业。首先,我们专注于热地芽孢杆菌脂肪酶2(BTL2)的蛋白质工程设计,以用两个丝氨酸取代野生型酶(BTL-WT)中的两个半胱氨酸(Cys65,Cys296)。然后,以类似的方式,将独特的半胱氨酸引入蛋白质的盖区域。对于定点引入的聚合物,合成了一组不同的量身定制的硫醇离子聚合物,事先用2,2-二硫代二吡啶(2-PDS)激活了半胱氨酸蛋白以进行二硫键交换。受保护的BTL变体用不同的聚合物进行了特殊修饰,收率很高,创建了一个小型的新生物催化剂库。观察到由盖区域的结构变化可能引起的催化性质的不同和重要的变化。在合成抗病毒和抗肿瘤药物的中间体(如核苷类似物和苯基戊二酸的衍生物)中测试了不同的改性生物催化剂。在全乙酰化胸苷的水解中,最好的生物催化剂是BTL * -193-DextCOOH,其活性增加了3倍,区域选择性得到了改善,达到了3'-O-乙酰基-92%的收率。胸苷。在不对称水解戊二酸二甲酯的情况下,使用BTL * -193-DextNH2-6000可获得最佳结果,其中酶活性增加了5倍以上,对映体过量> 99%。

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