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利用脯氨酸突变体辅助解析III型抗冻蛋白的核磁共振溶液结构。

Use of proline mutants to help solve the NMR solution structure of type III antifreeze protein.

作者信息

Chao H, Davies P L, Sykes B D, Sönnichsen F D

机构信息

Department of Biochemistry, Queen's University, Kingston, Ontario, Canada.

出版信息

Protein Sci. 1993 Sep;2(9):1411-28. doi: 10.1002/pro.5560020906.

Abstract

To help understand the structure/function relationships in antifreeze proteins (AFP), and to define the motifs required for ice binding, a Type III AFP suitable for two-dimensional (2D) NMR studies was produced in Escherichia coli. A synthetic gene for one of the Type III AFP isoforms was assembled in a T7 polymerase-directed expression vector. The 67-amino acid-long gene product differed from the natural AFP by inclusion of an N-terminal methionine but was indistinguishable in activity. The NMR spectra of this AFP were complicated by cis-trans proline isomerization from the C-terminal sequence YPPA. Substitution of this sequence by YAA eliminated isomer signals without altering the activity or structure of the mutant AFP. This variant (rQAE m1.1) was selected for sequential assignment and the secondary structure determination using 2D 1H NMR spectroscopy. Nine beta-strands are paired to form two triple-stranded antiparallel sheets and one double-stranded antiparallel sheet. Two further proline replacements, P29A and P33A, were made to delineate the role of conserved prolines in Type III AFP. These mutants were valuable in clarifying ambiguous NMR spectral assignments amongst the remaining six prolines of rQAE m1.1. In contrast to the replacement of the C-terminal prolyl residues, the exchange of P29 and P33 caused some structural changes and significantly decreased protein solubility and antifreeze activity.

摘要

为了帮助理解抗冻蛋白(AFP)的结构/功能关系,并确定冰结合所需的基序,在大肠杆菌中产生了一种适用于二维(2D)核磁共振研究的III型AFP。在T7聚合酶导向的表达载体中组装了III型AFP同工型之一的合成基因。这个67个氨基酸长的基因产物与天然AFP的不同之处在于包含一个N端甲硫氨酸,但活性上无法区分。该AFP的核磁共振谱因C端序列YPPA的顺反脯氨酸异构化而变得复杂。用YAA取代该序列消除了异构信号,同时不改变突变型AFP的活性或结构。选择这个变体(rQAE m1.1)进行序列归属,并使用二维1H核磁共振光谱法确定二级结构。九条β链配对形成两个三链反平行片层和一个双链反平行片层。进行了另外两个脯氨酸替换,P29A和P33A,以阐明保守脯氨酸在III型AFP中的作用。这些突变体对于澄清rQAE m1.1其余六个脯氨酸之间模糊的核磁共振光谱归属很有价值。与C端脯氨酰残基的替换不同,P29和P33的交换引起了一些结构变化,并显著降低了蛋白质的溶解度和抗冻活性。

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