Svoboda M E, Van Wyk J J, Klapper D G, Fellows R E, Grissom F E, Schlueter R J
Biochemistry. 1980 Feb 19;19(4):790-7. doi: 10.1021/bi00545a027.
Somatomedin-C (SM-C) was purified from Cohn fraction IV of human plasma by a series of steps which included cation-exchange chromatography, gel filtration, isoelectric focusing, and reverse-phase high-pressure liquid chromatography. The peptide isolated contained 10,142 units/mg, as judged by a radioimmunoassay, representing a 780,000-fold purification from native plasma. The isolated peptide was basic (pI 8.1-8.5) and was judged to be no less than 90% pure. The best fit for integral amino acids was obtained with 78 residues. Limited sequence data were obtained on the N terminus and on five fragments obtained by tryptic digestion after blocking the lysine residues. Three of these fragments and the N terminus could be aligned with portions of insulin-like growth factor I (IGF-I). Of the 25 residues so aligned, 22 were identical with IGF-I. In addition, two tryptic fragments were obtained which are not present in the sequence of IGF-I. SM-C and IGF-I produced identical curves of displacement in radioimmunoassay and radioreceptor assays for SM-C and in an insulin radioreceptor assay. The potencies of SM-C and IGF-I in these assays differed significantly from IGF-II, somatomedin-A, and several preparations of multiplication stimulating activity. At a concentration of 1 ng/mL, SM-C stimulated the progression of Balb/c 3T3 cells into DNA synthesis and when injected in vivo restored mitosis in lens epithelium of hypophysectomized frogs.
生长调节素C(SM-C)是从人血浆的Cohn IV组分中通过一系列步骤纯化得到的,这些步骤包括阳离子交换色谱法、凝胶过滤法、等电聚焦法和反相高压液相色谱法。通过放射免疫测定法判断,分离得到的肽每毫克含有10,142个单位,相对于天然血浆而言,纯化倍数达到780,000倍。分离得到的肽呈碱性(pI 8.1 - 8.5),纯度被判定不低于90%。对于完整氨基酸的最佳拟合结果是78个残基。在封闭赖氨酸残基后,获得了N端以及通过胰蛋白酶消化得到的五个片段的有限序列数据。其中三个片段和N端可以与胰岛素样生长因子I(IGF-I)的部分序列比对。在比对的25个残基中,有22个与IGF-I相同。此外,还获得了两个在IGF-I序列中不存在的胰蛋白酶片段。在SM-C的放射免疫测定、放射受体测定以及胰岛素放射受体测定中,SM-C和IGF-I产生了相同的置换曲线。在这些测定中,SM-C和IGF-I的效力与IGF-II、生长调节素A以及几种增殖刺激活性制剂有显著差异。在浓度为1 ng/mL时,SM-C刺激Balb/c 3T3细胞进入DNA合成阶段,并且在体内注射时可恢复垂体切除青蛙晶状体上皮细胞的有丝分裂。