Rajagopalan Lavanya, Chin Christopher C, Rajarathnam Krishna
Department of Biochemistry & Molecular Biology, and Sealy Center for Structural Biology & Molecular Biophysics, University of Texas Medical Branch, Galveston, TX 77555, USA.
Biophys J. 2007 Sep 15;93(6):2129-34. doi: 10.1529/biophysj.107.108761. Epub 2007 May 18.
The importance of intramolecular disulfides in a noncovalent dimeric protein interleukin-8 (IL-8) has been studied by replacing cysteines in each of the two disulfide pairs with alpha-aminobutyric acid (CH(2)-SH --> CH(2)-CH(3)). Both disulfide mutants are less stable and exist as molten globules in the monomeric state. Interestingly, both mutants dimerize, though with slightly lower affinities compared to the native protein. NMR studies suggest a molten globule-like structure also in the dimeric state. Structures, sequence analysis, and mutagenesis studies have shown that the conserved hydrophobic residues are packed against each other in the protein core and that H bonding and van der Waals interactions stabilize the dimer interface. Deleting either disulfide in IL-8 results in substantial loss in receptor activity, indicating that both disulfides are critical for function in the folded protein. These data together suggest that the packing interactions of the hydrophobic core determine IL-8 monomer fold, that disulfides play only a marginal role in dimer formation, and that the stability imparted by the disulfides is intimately coupled to fold and function.
通过用α-氨基丁酸(CH(2)-SH → CH(2)-CH(3))取代两个二硫键对中每一个的半胱氨酸,研究了分子内二硫键在非共价二聚体蛋白白细胞介素-8(IL-8)中的重要性。两个二硫键突变体都不太稳定,在单体状态下以熔球形式存在。有趣的是,两个突变体都能二聚化,尽管与天然蛋白相比亲和力略低。核磁共振研究表明二聚体状态下也存在类似熔球的结构。结构、序列分析和诱变研究表明,保守的疏水残基在蛋白核心中相互堆积,氢键和范德华相互作用稳定了二聚体界面。删除IL-8中的任何一个二硫键都会导致受体活性大幅丧失,这表明两个二硫键对于折叠蛋白的功能都至关重要。这些数据共同表明,疏水核心的堆积相互作用决定了IL-8单体的折叠,二硫键在二聚体形成中仅起边缘作用,并且二硫键赋予的稳定性与折叠和功能密切相关。