首页> 美国卫生研究院文献>Wiley-Blackwell Online Open >The structure of a GH149 β‐(1 → 3) glucan phosphorylase reveals a new surface oligosaccharide binding site and additional domains that are absent in the disaccharide‐specific GH94 glucose‐β‐(1 → 3)‐glucose (laminaribiose) phosphorylase
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The structure of a GH149 β‐(1 → 3) glucan phosphorylase reveals a new surface oligosaccharide binding site and additional domains that are absent in the disaccharide‐specific GH94 glucose‐β‐(1 → 3)‐glucose (laminaribiose) phosphorylase

机译:GH149β-(1→3)葡聚糖磷酸化酶的结构揭示了一个新的表面寡糖结合位点和二糖特异性GH94葡萄糖-β-(1→3)-葡萄糖(拉米纳利比糖)磷酸化酶中不存在的其他域

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摘要

Glycoside phosphorylases (GPs) with specificity for β‐(1 → 3)‐gluco‐oligosaccharides are potential candidate biocatalysts for oligosaccharide synthesis. GPs with this linkage specificity are found in two families thus far—glycoside hydrolase family 94 (GH94) and the recently discovered glycoside hydrolase family 149 (GH149). Previously, we reported a crystallographic study of a GH94 laminaribiose phosphorylase with specificity for disaccharides, providing insight into the enzyme's ability to recognize its' sugar substrate/product. In contrast to GH94, characterized GH149 enzymes were shown to have more flexible chain length specificity, with preference for substrate/product with higher degree of polymerization. In order to advance understanding of the specificity of GH149 enzymes, we herein solved X‐ray crystallographic structures of GH149 enzyme Pro_7066 in the absence of substrate and in complex with laminarihexaose (G6). The overall domain organization of Pro_7066 is very similar to that of GH94 family enzymes. However, two additional domains flanking its catalytic domain were found only in the GH149 enzyme. Unexpectedly, the G6 complex structure revealed an oligosaccharide surface binding site remote from the catalytic site, which, we suggest, may be associated with substrate targeting. As such, this study reports the first structure of a GH149 phosphorylase enzyme acting on β‐(1 → 3)‐gluco‐oligosaccharides and identifies structural elements that may be involved in defining the specificity of the GH149 enzymes.
机译:对β-(1→3)-葡萄糖-寡糖具有特异性的糖苷磷酸化酶(GPs)是寡糖合成的潜在候选生物催化剂。迄今为止,在两个家族中均发现了具有这种连接特异性的GP:糖苷水解酶家族94(GH94)和最近发现的糖苷水解酶家族149(GH149)。先前,我们报道了一种对二糖具有特异性的GH94拉米纳比糖磷酸化酶的晶体学研究,从而深入了解了该酶识别其糖底物/产物的能力。与GH94相比,已显示特征性GH149酶具有更灵活的链长特异性,并且优先选择具有更高聚合度的底物/产物。为了进一步了解GH149酶的特异性,我们在这里解决了GH149酶Pro_7066的X射线晶体学结构,这种结构在没有底物的情况下与Laminarihexaose(G6)形成复合物。 Pro_7066的总体结构域结构与GH94家族酶的结构域结构非常相似。然而,仅在GH149酶中发现了位于其催化结构域两侧的两个另外的结构域。出乎意料的是,G6复杂结构揭示了一个远离催化位点的寡糖表面结合位点,我们认为这可能与底物靶向有关。因此,本研究报告了作用于β-(1→3)-葡萄糖-寡糖的GH149磷酸化酶的第一个结构,并鉴定了可能参与定义GH149酶特异性的结构元件。

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