Department of Biological Chemistry and Institute of Biochemistry and Biophysics (IQUIFIB), School of Pharmacy and Biochemistry, University of Buenos Aires, C1113AAD, Buenos Aires, Argentina.
Protein Sci. 2009 Dec;18(12):2592-602. doi: 10.1002/pro.273.
A lingering issue in the area of protein engineering is the optimal design of beta motifs. In this regard, the framework provided by intestinal fatty acid binding protein (IFABP) was successfully chosen to explore the consequences on structure and function of the redesign of natural motifs. A truncated form of IFABP (Delta 98 Delta) served to illustrate the nonintuitive notion that the integrity of the beta-barrel can indeed be compromised with no effect on the ability to attain a native-like fold. This is most likely the outcome of the key role played by the preservation of essential core residues. In the search for the minimal structural determinants of this fold, Delta 98 Delta offered room for further intervention. A dissection of this protein leads to a new abridged variant, Delta 78 Delta, containing 60% of the amino acids of IFABP. Spectroscopic analyses indicate that Delta 78 Delta retains substantial beta-sheet content and preserves tertiary interactions, displaying cooperative unfolding and binding activity. Most strikingly, this construct adopts a remarkably stable dimeric structure in solution. This phenomenon takes advantage of the inherent structural plasticity of this motif, likely profitting from edge-to-edge interactions between beta-sheets, whereas avoiding the most commonly occurring outcome represented by aggregation.
在蛋白质工程领域,一个悬而未决的问题是β基序的最佳设计。在这方面,肠脂肪酸结合蛋白(IFABP)的结构为探索对天然基序重新设计的结构和功能后果提供了一个很好的范例。IFABP 的截断形式(Delta 98 Delta)说明了一个非直观的概念,即β桶的完整性实际上可以被破坏,而不会影响达到天然样折叠的能力。这很可能是由于关键核心残基的保存所起的作用。在寻找这种折叠的最小结构决定因素的过程中,Delta 98 Delta 为进一步的干预提供了空间。对这种蛋白质的剖析导致了一个新的简化变体,Delta 78 Delta,它含有 IFABP 60%的氨基酸。光谱分析表明,Delta 78 Delta 保留了大量的β-折叠含量,并保持了三级相互作用,显示出协同展开和结合活性。最引人注目的是,这种结构在溶液中形成了一种非常稳定的二聚体结构。这种现象利用了该基序固有的结构可塑性,可能得益于β-折叠之间的边缘到边缘的相互作用,而避免了最常见的聚合结果。