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Rational Design of a New Trypanosoma rangeli Trans-Sialidase for Efficient Sialylation of Glycans

机译:一种新型锥虫反式唾液酸酶的有效设计用于聚糖的高效唾液酸化

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摘要

This paper reports rational engineering of Trypanosoma rangeli sialidase to develop an effective enzyme for a potentially important type of reactivity: production of sialylated prebiotic glycans. The Trypanosoma cruzi trans-sialidase and the homologous T. rangeli sialidase has previously been used to investigate the structural requirements for trans-sialidase activity. We observed that the T. cruzi trans-sialidase has a seven-amino-acid motif (197–203) at the border of the substrate binding cleft. The motif differs substantially in chemical properties and substitution probability from the homologous sialidase, and we hypothesised that this motif is important for trans-sialidase activity. The 197–203 motif is strongly positively charged with a marked change in hydrogen bond donor capacity as compared to the sialidase. To investigate the role of this motif, we expressed and characterised a T. rangeli sialidase mutant, Tr13. Conditions for efficient trans-sialylation were determined, and Tr13's acceptor specificity demonstrated promiscuity with respect to the acceptor molecule enabling sialylation of glycans containing terminal galactose and glucose and even monomers of glucose and fucose. Sialic acid is important in association with human milk oligosaccharides, and Tr13 was shown to sialylate a number of established and potential prebiotics. Initial evaluation of prebiotic potential using pure cultures demonstrated, albeit not selectively, growth of Bifidobacteria. Since the 197–203 motif stands out in the native trans-sialidase, is markedly different from the wild-type sialidase compared to previous mutants, and is shown here to confer efficient and broad trans-sialidase activity, we suggest that this motif can serve as a framework for future optimization of trans-sialylation towards prebiotic production.
机译:本文报道了锥虫锥虫唾液酸酶的合理工程,以开发一种有效的酶用于潜在的重要反应类型:唾液酸化的益生元聚糖的生产。克鲁氏锥虫转唾液酸酶和同源的T.rangeli唾液酸唾液酸酶以前曾被用来研究转唾液酸酶活性的结构要求。我们观察到,克鲁维氏锥虫反唾液酸酶在底物结合裂隙的边界处具有七个氨基酸基序(197-203)。该基序在化学性质和取代概率上与同源唾液酸酶基本不同,我们假设该基序对反唾液酸酶活性很重要。与唾液酸酶相比,197-203基序带正电荷,氢键供体容量发生明显变化。为了研究该基序的作用,我们表达并表征了兰氏锥虫唾液酸酶突变体Tr13。确定有效的转唾液酸化的条件,并且Tr13的受体特异性相对于能够使包含末端半乳糖和葡萄糖以及甚至葡萄糖和岩藻糖单体的聚糖进行唾液酸化的受体分子证明是混杂的。唾液酸与人乳寡糖有关,很重要,Tr13被证明可以唾液化许多已建立的和潜在的益生元。使用纯培养物对益生元的潜力进行了初步评估,尽管没有选择性地证明了双歧杆菌的生长。由于197–203基序在天然反唾液酸酶中脱颖而出,与以前的突变体相比与野生型唾液酸酶明显不同,并且此处显示具有有效和广泛的反唾液酸酶活性,因此我们建议该基序可以发挥作用作为未来优化转口唾液酸生产益生元的框架。

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