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SpyRing interrogation: analyzing how enzyme resilience can be achieved with phytase and distinct cyclization chemistries

机译:SpyRing审问:分析如何通过植酸酶和独特的环化化学物质实现酶的抗逆性

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Enzymes catalyze reactions with exceptional selectivity and rate acceleration but are often limited by instability. Towards a generic route to thermo-resilience, we established the SpyRing approach, cyclizing enzymes by sandwiching between SpyTag and SpyCatcher (peptide and protein partners which lock together via a spontaneous isopeptide bond). Here we first investigated the basis for this resilience, comparing alternative reactive peptide/protein pairs we engineered from Gram-positive bacteria. Both SnoopRing and PilinRing cyclization gave dramatic enzyme resilience, but SpyRing cyclization was the best. Differential scanning calorimetry for each ring showed that cyclization did not inhibit unfolding of the inserted β-lactamase. Cyclization conferred resilience even at 100?°C, where the cyclizing domains themselves were unfolded. Phytases hydrolyze phytic acid and improve dietary absorption of phosphate and essential metal ions, important for agriculture and with potential against human malnutrition. SpyRing phytase (PhyC) resisted aggregation and retained catalytic activity even following heating at 100?°C. In addition, SpyRing cyclization made it possible to purify phytase simply by heating the cell lysate, to drive aggregation of non-cyclized proteins. Cyclization via domains forming spontaneous isopeptide bonds is a general strategy to generate resilient enzymes and may extend the range of conditions for isolation and application of enzymes.
机译:酶以极高的选择性和速率加速催化反应,但通常受到不稳定的限制。为了实现通用的耐热性途径,我们建立了SpyRing方法,通过将SpyTag和SpyCatcher(通过自发的异肽键锁定在一起的肽和蛋白质伴侣)夹在中间来环化酶。在这里,我们首先研究了这种弹性的基础,比较了我们从革兰氏阳性细菌中工程改造的其他反应性肽/蛋白质对。 SnoopRing和PilinRing环化均具有出色的酶弹性,但SpyRing环化效果最佳。每个环的差示扫描量热法显示环化没有抑制所插入的β-内酰胺酶的展开。环化甚至在100°C时仍具有弹性,其中环化结构域本身已经展开。植酸酶水解植酸并改善膳食中磷酸盐和必需金属离子的吸收,这对农业很重要,并且具有抗人类营养不良的潜力。 SpyRing肌醇六磷酸酶(PhyC)抵抗聚集并保持催化活性,即使在100°C下加热也是如此。此外,SpyRing环化使得仅通过加热细胞裂解液即可纯化植酸酶,从而驱动非环化蛋白质的聚集。经由形成自发异肽键的结构域的环化是产生弹性酶的一般策略,并且可以扩大分离和应用酶的条件范围。

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