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Prediction of a New Ligand-Binding Site for Type 2 Motif based on the Crystal Structure of ALG-2 by Dry and Wet Approaches

机译:基于ALG-2晶体结构的干湿法预测2型基序的新配体结合位点

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摘要

ALG-2 is a penta-EF-hand Ca2+-binding protein and interacts with a variety of intracellular proteins. Two types of ALG-2-binding motifs have been determined: type 1, PXYPXnYP (X, variable; n = 4), in ALIX and PLSCR3; type 2, PXPGF, in Sec31A and PLSCR3. The previously solved X-ray crystal structure of the complex between ALG-2 and an ALIX peptide containing type 1 motif showed that the peptide binds to Pocket 1 and Pocket 2. Co-crystallization of ALG-2 and type 2 motif-containing peptides has not been successful. To gain insights into the molecular basis of type 2 motif recognition, we searched for a new hydrophobic cavity by computational algorithms using MetaPocket 2.0 based on 3D structures of ALG-2. The predicted hydrophobic pocket designated Pocket 3 fits with N-acetyl-ProAlaProGlyPhe-amide, a virtual penta-peptide derived from one of the two types of ALG-2-binding sites in PLSCR3 (type 2 motif), using the molecular docking software AutoDock Vina. We investigated effects of amino acid substitutions of the predicted binding sites on binding abilities by pulldown assays using glutathione-S-transferase -fused ALG-2 of wild-type and mutant proteins and lysates of cells expressing green fluorescent protein -fused PLSCR3 of wild-type and mutants. Substitution of either L52 with Ala or F148 with Ser of ALG-2 caused loss of binding abilities to PLSCR3 lacking type 1 motif but retained those to PLSCR3 lacking type 2 motif, strongly supporting the hypothesis that Pocket 3 is the binding site for type 2 motif.
机译:ALG-2是一种五联EF-手Ca 2 + 结合蛋白,可与多种细胞内蛋白相互作用。确定了两种类型的ALG-2结合基序:ALIX和PLSCR3中的类型1,PXYPXnYP(X,变量; n = 4); Sec31A和PLSCR3中的类型2 PXPGF。先前解析的ALG-2和含有1型基序的ALIX肽之间的复合物的X射线晶体结构表明,该肽与Pocket 1和Pocket 2结合。ALG-2和含有2型基序的肽的共结晶具有没有成功。为了深入了解2型基序识别的分子基础,我们使用基于Alg-2的3D结构的MetaPocket 2.0通过计算算法搜索了新的疏水腔。使用分子对接软件AutoDock,预测的称为Pocket 3的疏水性口袋与N-乙酰-ProAlaProGlyPhe-酰胺(一种来自于PLSCR3中2种ALG-2-结合位点中的两种类型之一的虚拟五肽)结合(类型2基序)。维娜我们通过使用谷胱甘肽-S-转移酶融合的野生型和突变蛋白的ALG-2以及表达绿色荧光蛋白的细胞的裂解物-融合的野生型PLSCR3的下拉测定法研究了预测的结合位点的氨基酸取代对结合能力的影响。类型和突变体。用Ala取代L52或用ALG-2 Ser取代F148导致与缺乏1型基序的PLSCR3的结合能力丧失,但保留了与缺乏2型基序的PLSCR3的结合能力,这强烈支持了Pocket 3是2型基序的结合位点的假设。 。

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