Ashitaka Y, Nishimura R, Futamura K, Tojo S
Endocrinol Jpn. 1977 Feb;24(1):115-9. doi: 10.1507/endocrj1954.24.115.
Sera and fluid in molar vesicles from 4 patients with hydatidiform mole were analyzed for hCG and its subunits. These samples were initially chromatographed through a standardized Sephadex G-100 upward column. Starting materials and each fraction on gel filtration were radioimmunoassay in homologous hCG, hCG-alpha and hCG-beta assays. The specimens obtained from 4 patients contained primarily hCG and little hCG-beta. Immunoreactive hCG-alpha was barely detectable in sera but was clearly demonstrated in vesicle fluid from molar patients. This immunoreactive hCG-alpha was combined with [125I]hCG-beta. The combined protein, [125I]hCG and [125I]hCG-beta recombined with urinary hCG-alpha were concentrated in the superovulated rat ovary in vivo. However, [125I]hCG-alpha and [125I]hCG-beta were not taken up by the ovaries. The biosynthesis of hCG-alpha are discussed.
对4例葡萄胎患者的血清及水泡液进行了hCG及其亚基分析。这些样本首先通过标准化的葡聚糖凝胶G - 100上行柱进行层析。凝胶过滤的起始材料和每个组分用同源hCG、hCG-α和hCG-β检测法进行放射免疫测定。4例患者的标本主要含有hCG,hCG-β含量很少。血清中几乎检测不到免疫反应性hCG-α,但在葡萄胎患者的水泡液中可清晰检测到。这种免疫反应性hCG-α与[125I]hCG-β结合。结合蛋白、[125I]hCG以及与尿hCG-α重组的[125I]hCG-β在体内超排卵大鼠卵巢中富集。然而,卵巢不摄取[125I]hCG-α和[125I]hCG-β。文中讨论了hCG-α的生物合成。