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Study of molecular recognition mechanism in protein GPI modification: a bioinformatics analysis of interaction between GPI-anchored proteins and modification enzyme

机译:蛋白质GPI修饰中的分子识别机制研究:GPI锚定蛋白质与修饰酶相互作用的生物信息学分析

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References(30) The interaction for protein glycosylphosphatidylinositol (GPI) modification between the premature GPI-anchored proteins and the active sites in PIG-K, one of the GPI transamidase proteins, is discussed in this study by the homology modeling method and amino acid propensity analysis in the space around the ω-sites in premature GPI-anchored proteins. In particular, the direct interaction between ω-sites of GPI-anchored proteins and PIG-K was focused on, the root-mean-square deviation (RMSD) and three-dimensional amino acid propensity around the ω-sites were analyzed in the present study. As the results, PIG-K was considered to recognize the specific structure around the ω-sites of the GPI-anchored proteins, the positively-charged Lys (K) and Arg (R) residues around the ω-sites have the possibility to interact with the negatively-charged Asp (D) and Glu (E) residues around an active site of PIG-K, and Tyr (Y) and Ala (A) residues around the ω-sites are thought to be essential for molecular recognition by PIG-K. The findings in this study that structural recognition around the ω-site in the mature GPI-anchored proteins by PIG-K are useful for understanding the local mechanism of the GPI modification enzyme and can be applied for the development of cell-surface-engineering.
机译:参考文献(30)本研究通过同源性建模方法和氨基酸倾向性研究了过早的GPI固定蛋白与PIG-K中的活性位点PIG-K中的蛋白质糖基磷脂酰磷脂酰肌醇(GPI)修饰之间的相互作用。 GPI锚定的蛋白质中ω-位点周围空间的蛋白质分析。特别地,着重研究了GPI锚定蛋白的ω位与PIG-K的直接相互作用,分析了ω位周围的均方根偏差(RMSD)和三维氨基酸倾向。研究。结果,PIG-K被认为可识别GPI锚定蛋白质ω位周围的特定结构,ω位周围带正电荷的Lys(K)和Arg(R)残基有可能相互作用在PIG-K活性位点附近带有带负电荷的Asp(D)和Glu(E)残基,而在ω-位点附近的Tyr(Y)和Ala(A)残基被认为对于PIG分子识别至关重要-K这项研究的发现表明,PIG-K可识别成熟的GPI锚定蛋白质中ω位周围的结构,这有助于理解GPI修饰酶的局部机制,并可用于细胞表面工程的发展。

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