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钙结合在 II 型抗冻蛋白上生成半笼形水合物以吸附到冰晶表面。

Calcium-Binding Generates the Semi-Clathrate Waters on a Type II Antifreeze Protein to Adsorb onto an Ice Crystal Surface.

机构信息

Graduate School of Life Science, Hokkaido University, Sapporo 060-0810, Japan.

Bioproduction Research Institute, National Institute of Advanced Industrial Science and Technology (AIST), Sapporo 062-8517, Japan.

出版信息

Biomolecules. 2019 Apr 27;9(5):162. doi: 10.3390/biom9050162.

Abstract

Hydration is crucial for a function and a ligand recognition of a protein. The hydration shell constructed on an antifreeze protein (AFP) contains many organized waters, through which AFP is thought to bind to specific ice crystal planes. For a Ca-dependent species of AFP, however, it has not been clarified how 1 mol of Ca-binding is related with the hydration and the ice-binding ability. Here we determined the X-ray crystal structure of a Ca-dependent AFP (jsAFP) from Japanese smelt, , in both Ca-bound and -free states. Their overall structures were closely similar (Root mean square deviation (RMSD) of Cα = 0.31 Å), while they exhibited a significant difference around their Ca-binding site. Firstly, the side-chains of four of the five Ca-binding residues (Q92, D94 E99, D113, and D114) were oriented to be suitable for ice binding only in the Ca-bound state. Second, a Ca-binding loop consisting of a segment D94-E99 becomes less flexible by the Ca-binding. Third, the Ca-binding induces a generation of ice-like clathrate waters around the Ca-binding site, which show a perfect position-match to the waters constructing the first prism plane of a single ice crystal. These results suggest that generation of ice-like clathrate waters induced by Ca-binding enables the ice-binding of this protein.

摘要

水合作用对于蛋白质的功能和配体识别至关重要。抗冻蛋白 (AFP) 上构建的水合壳包含许多有组织的水分子,人们认为 AFP 通过这些水分子与特定的冰晶平面结合。然而,对于依赖 Ca 的 AFP 物种,尚未阐明 1 摩尔 Ca 结合与水合作用和冰结合能力之间的关系。在这里,我们确定了来自日本胡瓜鱼的依赖 Ca 的 AFP(jsAFP)的 X 射线晶体结构,处于 Ca 结合和非结合状态。它们的整体结构非常相似(Cα 的均方根偏差 (RMSD) = 0.31 Å),而它们在 Ca 结合位点周围表现出显著差异。首先,五个 Ca 结合残基(Q92、D94、E99、D113 和 D114)中的四个侧链仅在 Ca 结合状态下才适合与冰结合。其次,由 D94-E99 组成的 Ca 结合环通过 Ca 结合变得不那么灵活。第三,Ca 结合诱导 Ca 结合位点周围产生类似冰的笼形水,这些水与构成单个冰晶第一棱镜平面的水分子完美匹配。这些结果表明,Ca 结合诱导的类似冰的笼形水的产生使该蛋白质能够与冰结合。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f38a/6572318/cef895c091b5/biomolecules-09-00162-g001.jpg

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