Hsu Y R, Wu G M, Mendiaz E A, Syed R, Wypych J, Toso R, Mann M B, Boone T C, Narhi L O, Lu H S, Langley K E
Amgen Inc., Amgen Center, Thousand Oaks, California 91320, USA.
J Biol Chem. 1997 Mar 7;272(10):6406-15. doi: 10.1074/jbc.272.10.6406.
Soluble Escherichia coli-derived recombinant human stem cell factor (rhSCF) forms a non-covalently associated dimer. We have determined a dimer association constant (Ka) of 2-4 x 10(8) M-1, using sedimentation equilibrium and size exclusion chromatography. SCF has been shown previously to be present at concentrations of approximately 3.3 ng/ml in human serum. Based on the dimerization Ka, greater than 90% of the circulating SCF would be in the monomeric form. When 125I-rhSCF was added to human serum and the serum analyzed by size exclusion chromatography, 72-49% of rhSCF was monomer when the total SCF concentration was in the range of 10-100 ng/ml, consistent with the Ka determination. Three SCF variants, SCF(F63C), SCF (V49L,F63L), and SCF(A165C), were recombinantly expressed in Escherichia coli, purified, and characterized. The dimer Ka values, biophysical properties, and biological activities of these variants were studied. Dimerization-defective variants SCF(F63C)S-CH2CONH2 and SCF(V49L,F63L) showed substantially reduced mitogenic activity, while the activity of the Cys165-Cys165 disulfide-linked SCF(A165C) dimer was 10-fold higher than that of wild type rhSCF. The results suggest a correlation between dimerization affinity and biological activity, consistent with a model in which SCF dimerization mediates dimerization of its receptor, Kit, and subsequent signal transduction.
可溶性大肠杆菌衍生的重组人干细胞因子(rhSCF)形成非共价结合的二聚体。我们使用沉降平衡和尺寸排阻色谱法测定了二聚体缔合常数(Ka)为2 - 4×10⁸ M⁻¹。先前已表明SCF在人血清中的浓度约为3.3 ng/ml。基于二聚化Ka,超过90%的循环SCF将以单体形式存在。当将¹²⁵I - rhSCF添加到人血清中并通过尺寸排阻色谱法分析血清时,当总SCF浓度在10 - 100 ng/ml范围内时,72 - 49%的rhSCF为单体,这与Ka测定结果一致。三种SCF变体,SCF(F63C)、SCF(V49L,F63L)和SCF(A165C),在大肠杆菌中重组表达、纯化并进行了表征。研究了这些变体的二聚体Ka值、生物物理性质和生物学活性。二聚化缺陷变体SCF(F63C)S-CH₂CONH₂和SCF(V49L,F63L)的促有丝分裂活性大幅降低,而Cys165 - Cys165二硫键连接的SCF(A165C)二聚体的活性比野生型rhSCF高10倍。结果表明二聚化亲和力与生物学活性之间存在相关性,这与SCF二聚化介导其受体Kit二聚化及随后信号转导的模型一致。