Söhndel S, Hu C K, Marti D, Affolter M, Schaller J, Llinás M, Rickli E E
Institut für Biochemie, Universität Bern, Switzerland.
Biochemistry. 1996 Feb 20;35(7):2357-64. doi: 10.1021/bi9520949.
The plasminogen kringle 2 (K2HPg) and kringle 3 (K3HPg) modules occur in tandem within the polypeptide segment that affords the heavy chain of plasmin. The K2HPg and K3HPg are unique among the plasminogen kringle domains in that they also are linked to each other via the Cys169-Cys297 (Cys4 of K2HPg to Cys43 of K3HPg, kringle numbering convention) disulfide bridge, thus generating a K2HPg-K3HPg "supermodule". The kringle (2 + 3) sequence of human plasminogen (r-EE[K2HPgK3HPg]DS) was expressed in Escherichia coli, using an expression vector containing the phage T5 promoter/operator N250PSN250P29 and the codons for an N-terminal hexahistidine tag to ensure the isolation of the recombinant protein by affinity chromatography on Ni(2+)-nitrilotriacetic acid/agarose under denaturing and reducing conditions. Kringle (2 + 3) was refolded in the presence of glutathione redox buffer. By taking advantage of the lysine affinity of kringle 2, the protein was purified by affinity chromatography on lysine-Bio-Gel. Recombinant kringle (2 + 3) was identified by amino acid composition, N-terminal sequence and mass determination. The 1H NMR spectrum shows that the intact r-K2HPgK3HPg is properly folded. By reference to spectra of the individual kringles, r-K2HPg and r-K3HPg, resonances of the K2HPg and K3HPg components in the spectrum of the intact r-K2HPgK3HPg can be readily distinguished. The strictly conserved Leu46 residue (kringle residue number convention) yields delta-methyl signals that are characteristic for K2HPg and K3HPg, exhibiting chemical shifts of -0.87 and -0.94 ppm, respectively, which are distinct from those of K1HPg, K4HPg, and K5HPg, (-1.04 to -1.05 ppm). Thus, the high-field Leu46 signals from K2HPg and K3HPg are well resolved from those of other kringles and can be identified unambiguously in spectra of the K1HPgK2HPgK3HPg elastolytic fragment of plasminogen as well as in spectra of Glu-plasminogen. Overall, r-K2HPgK3HPg exhibits broader resonance line widths than does the K1HPg component, consistent with a lesser mobility of the K2HPgK3HPg segment within the K1HPgK2HPgK3HPg fragment, a reflection of the extra structural constraint imposed by the disulfide bridge linking K2HPg to K3HPg. The ligand 6-aminohexanoic acid (6-AHA), which is known to interact with r-K2HPg but not with r-K3HPg, selectively perturbs K2 aromatic signals in the intact r-K2HPgK3HPg spectrum while leaving K3 resonances largely unaffected. Association constant (K(a)) values for 6-AHA determined from 1H NMR ligand titration experiments yield K(a) approximately 2.2 +/- 0.3 mM(-1) for the intact r-K2HPgK3HPg, comparable to K(a) approximately 2.3 +/- 0.2 mM(-1) determined for the isolated r-K2HPg, which demonstrates that the interactions of 6-AHA with the K2HPg ligand-binding site are not significantly affected by the neighboring K3HPg domain within the intact r-K2HPgK3HPg supermodule.
纤溶酶原kringle 2(K2HPg)和kringle 3(K3HPg)模块在构成纤溶酶重链的多肽片段中串联出现。K2HPg和K3HPg在纤溶酶原kringle结构域中是独特的,因为它们还通过Cys169 - Cys297(K2HPg的Cys4至K3HPg的Cys43,kringle编号惯例)二硫键相互连接,从而产生一个K2HPg - K3HPg“超级模块”。人纤溶酶原的kringle(2 + 3)序列(r - EE[K2HPgK3HPg]DS)在大肠杆菌中表达,使用含有噬菌体T5启动子/操纵子N250PSN250P29和N端六组氨酸标签密码子的表达载体,以确保在变性和还原条件下通过镍(2 +) - 次氮基三乙酸/琼脂糖上的亲和色谱法分离重组蛋白。kringle(2 + 3)在谷胱甘肽氧化还原缓冲液存在下进行重折叠。利用kringle 2的赖氨酸亲和力,通过赖氨酸 - Bio - Gel上的亲和色谱法纯化该蛋白。通过氨基酸组成、N端序列和质量测定鉴定重组kringle(2 + 3)。1H NMR谱表明完整的r - K2HPgK3HPg正确折叠。参照单个kringle,即r - K2HPg和r - K3HPg的谱,完整的r - K2HPgK3HPg谱中K2HPg和K3HPg组分的共振可以很容易地区分。严格保守的Leu46残基(kringle残基编号惯例)产生的δ - 甲基信号是K2HPg和K3HPg特有的,化学位移分别为 - 0.87和 - 0.94 ppm,这与K1HPg、K4HPg和K5HPg的化学位移( - 1.04至 - 1.05 ppm)不同。因此,来自K2HPg和K3HPg的高场Leu46信号与其他kringle的信号很好地分辨开,并且可以在纤溶酶原的K1HPgK2HPgK3HPg弹性溶解片段的谱以及Glu - 纤溶酶原的谱中明确鉴定。总体而言,r - K2HPgK3HPg的共振线宽比K1HPg组分宽,这与K2HPgK3HPg片段内K2HPgK3HPg区段的迁移率较低一致,这反映了连接K2HPg与K3HPg的二硫键所施加的额外结构限制。已知与r - K2HPg相互作用但不与r - K3HPg相互作用的配体6 - 氨基己酸(6 - AHA)在完整的r - K2HPgK3HPg谱中选择性地干扰K2芳香族信号,而K3共振基本不受影响。通过1H NMR配体滴定实验确定的6 - AHA的缔合常数(K(a))值对于完整的r - K2HPgK3HPg约为K(a)≈2.2±0.3 mM(-1),与分离得到了r - K2HPg测定的K(a)≈2.3±0.2 mM(-1)相当,这表明在完整的r - K2HPgK3HPg超级模块中,6 - AHA与K2HPg配体结合位点的相互作用不受相邻K3HPg结构域的显著影响。