Russell J, Sherwood L M, Kowalski K, Schneider A B
Proc Natl Acad Sci U S A. 1979 Mar;76(3):1204-7. doi: 10.1073/pnas.76.3.1204.
In order to determine the chemical features of human placental lactogen (hPL) necessary for its biologic activity we prepared the following fragments from the plasmin-cleaved hormone: reduced and alkylated 1--134, reduced and alkylated 141--191, and a 1--134 dimer joined through the single cysteinyl residue at position 53. In a radioimmunoassay using antibodies against native hPL, the two reduced and alkylated fragments produced nonparallel displacement and had less than 1% of the activity of hPL. The ability of reduced and alkylated 1--134 to bind to mammary gland receptors was less than 5% of that of hPL; reduced and alkylated 141--191 showed no detectable activity in the same assay. The 1--134 dimer, in contrast, had 20% of the immunologic activity and 30% of the ability to bind to lactogenic receptors relative to the native hormone. In an in vitro bioassay the lactogenic activity of the 1--134 dimer was equivalent to that of the native hormone. The circular dichroic spectra of hPL, reduced and alkylated 1--134, and 1--134 dimer indicated that the dimer had regained much of the helical content of the native hormone. Antibodies produced to reduced and alkylated 1--134 did not significantly crossreact with either native hPL or 1--134 dimer. From these data we conclude that the information for the lactogenic activity of hPL is contained in the first 134 amino acid residues and that the proper conformation is necessary for its biologic expression.
为了确定人胎盘催乳素(hPL)发挥其生物活性所必需的化学特征,我们从纤溶酶裂解的该激素制备了以下片段:还原烷基化的1 - 134片段、还原烷基化的141 - 191片段,以及通过53位单个半胱氨酸残基连接的1 - 134二聚体。在使用抗天然hPL抗体的放射免疫测定中,这两个还原烷基化片段产生非平行置换,且活性不到hPL的1%。还原烷基化的1 - 134与乳腺受体结合的能力不到hPL的5%;还原烷基化的141 - 191在相同测定中未显示出可检测到的活性。相比之下,1 - 134二聚体具有相对于天然激素20%的免疫活性和30%的与催乳素受体结合的能力。在体外生物测定中,1 - 134二聚体的催乳活性与天然激素相当。hPL、还原烷基化的1 - 134和1 - 134二聚体的圆二色光谱表明,该二聚体恢复了天然激素的大部分螺旋结构含量。针对还原烷基化的1 - 134产生的抗体与天然hPL或1 - 134二聚体均无明显交叉反应。从这些数据我们得出结论,hPL催乳活性的信息包含在前134个氨基酸残基中,且正确的构象对其生物学表达是必需的。