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Structural Basis for Antifreeze Activity of Ice-binding Protein from Arctic Yeast

机译:北极酵母冰结合蛋白抗冻活动的结构基础

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Arctic yeast Leucosporidium sp. produces a glycosylated ice-binding protein (LeIBP) with a molecular mass of ~25 kDa, which can lower the freezing point below the melting point once it binds to ice. LeIBP is a member of a large class of ice-binding proteins, the structures of which are unknown. Here, we report the crystal structures of non-glycosylated LeIBP and glycosylated LeIBP at 1.57- and 2.43-? resolution, respectively. Structural analysis of the LeIBPs revealed a dimeric right-handed β-helix fold, which is composed of three parts: a large coiled structural domain, a long helix region (residues 96–115 form a long α-helix that packs along one face of the β-helix), and a C-terminal hydrophobic loop region (243PFVPAPEVV251). Unexpectedly, the C-terminal hydrophobic loop region has an extended conformation pointing away from the body of the coiled structural domain and forms intertwined dimer interactions. In addition, structural analysis of glycosylated LeIBP with sugar moieties attached to Asn185 provides a basis for interpreting previous biochemical analyses as well as the increased stability and secretion of glycosylated LeIBP. We also determined that the aligned Thr/Ser/Ala residues are critical for ice binding within the B face of LeIBP using site-directed mutagenesis. Although LeIBP has a common β-helical fold similar to that of canonical hyperactive antifreeze proteins, the ice-binding site is more complex and does not have a simple ice-binding motif. In conclusion, we could identify the ice-binding site of LeIBP and discuss differences in the ice-binding modes compared with other known antifreeze proteins and ice-binding proteins.
机译:北极酵母白梭菌SP。产生含有〜25kDa的分子量的糖基化的冰结合蛋白(Leibp),这一旦与冰结合,就可以降低熔点以下的冷冻点。 Leibp是一大类冰结合蛋白的成员,其结构是未知的。在此,我们在1.57-和2.43-中报告了非糖基化的Leibp和糖基化的Leibp的晶体结构。分别分辨率。 Leibps的结构分析显示了一款二聚体右手β-螺旋折叠,其由三个部分组成:一个大的卷绕结构域,长螺旋区域(残留物96-115形成长α-螺旋,沿着一面包装β-螺旋)和C末端疏水环区域(243pfvpapevv251)。出乎意料地,C末端疏水性环形区域具有延伸的构象,指向螺旋结构域的主体,形成交织的二聚体相互作用。此外,糖基化的Leibp与附着于Asn185的糖部分的结构分析为解释先前的生物化学分析提供了基础,以及增加糖基化的Leibp的稳定性和分泌增加。我们还确定对齐的THR / SER / ALA残基适用于使用点定向诱变的Leibp的B面内的冰结合至关重要。虽然Leibp具有与规范过度抗冻蛋白相似的常见β-螺旋折叠,但冰结合位点更复杂,并且没有简单的冰结合基序。总之,我们可以鉴定Leibp的冰结合位点,与其他已知的防冻蛋白和冰结合蛋白相比,讨论冰结合模式的差异。

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