Immunological evidence that a 305‐kilodalton vitelline envelope polypeptide isolated from sea urchin eggs is a sperm receptor

M. Acevedo-Duncan, E. Carroll
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引用次数: 18

Abstract

Direct isolation of the sea urchin egg vitelline envelope with intact sperm receptors is difficult because the envelope is firmly attached to the egg plasma membrane. We now report a method for producing an inseminated egg preparation in Strongylocentrotus purpuratus (using soybean trypsin inhibitor [STI] and Ca2+, Mg2+-free seawater) that contains an elevated vitelline envelope (VE*-STI). The VE*-STI is devoid of cortical granule material, and supernumerary sperm do not detach postinsemination, suggesting that the VE*-STI contains active sperm receptors. VE*-STIs contain a 305-kD polypeptide and additional components that range from 225 to 31 kD, whereas the 305-kD polypeptide was considerably reduced in VE*s. Electrophoresis of sperm receptor hydrolase digests of VE*-STIs showed that the 305-kD polypeptide and several other envelope polypeptides are protease substrates. Univalent Fab fragments against VE*s, VE*-STIs, and 305 and 225-kD polypeptides blocked sperm binding and fertilization in an Fab concentration-dependent manner. The 305 and 225-kD polypeptides were localized in the VE*-STI using indirect immunofluorescence. Enzyme-linked immunosorbent assays showed that the 305 and 225-kD polypeptides share determinants, suggesting that the 225-kD polypeptide may be derived from the 305-kD polypeptide by the proteolysis that occurs at the cell surface during fertilization. Fab fragments against S purpuratus VE*-STI antigens neither bound to nor blocked homologous sperm binding and fertilization of Lytechinus variegatus eggs. Cross fertilizability occurred to the extent of 5% or less between L variegatus and S purpuratus, therefore, we conclude that the 305 kD-polypeptide isolated from S purpuratus is a species-specific vitelline envelope sperm receptor.
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从海胆卵中分离出的305千道尔顿卵磷脂包膜多肽是精子受体的免疫学证据
用完整的精子受体直接分离海胆卵黄膜是困难的,因为卵黄膜牢固地附着在卵质膜上。我们现在报道了一种在紫圆梭菌(Strongylocentrotus purpuratus)中生产受精卵制剂的方法(使用大豆胰蛋白酶抑制剂[STI]和不含Ca2+, Mg2+的海水),其中含有升高的卵磷脂包膜(VE*-STI)。VE*-STI缺乏皮质颗粒物质,并且多余的精子在授精后不会分离,这表明VE*-STI含有活性精子受体。VE*-STIs含有一个305-kD的多肽和225 - 31 kD的额外成分,而VE*s中305-kD的多肽明显减少。精子受体水解酶酶切电泳结果表明,305-kD多肽和其他几种包膜多肽是蛋白酶底物。针对VE*s、VE*-STIs和305和225-kD多肽的单价Fab片段以Fab浓度依赖的方式阻断精子结合和受精。利用间接免疫荧光法将305和225-kD多肽定位于VE*-STI。酶联免疫吸附试验表明,305和225-kD多肽具有相同的决定因子,这表明225-kD多肽可能是在受精过程中细胞表面发生的蛋白水解而产生的。针对S purpuratus VE*-STI抗原的Fab片段既不结合也不阻断Lytechinus variegatus卵的同源精子结合和受精。异种鱼和紫癜鱼的杂交受精率不超过5%,因此,我们认为从紫癜鱼中分离到的305kd多肽是种特异性卵黄包膜精子受体。
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Genetic engineering of animals: An agricultural perspective, edited by J. Warren Evans and Alexander Hollaender; Plenum Press, New York, 1986, 328 pp. $49.50 Immunological evidence that a 305‐kilodalton vitelline envelope polypeptide isolated from sea urchin eggs is a sperm receptor Developmental capacity of mouse oocytes following maintenance of meiotic arrest in vitro Phosphoproteins are structural components of bull sperm outer dense fiber Effect of triton X‐100 on ultrastructure, reactivation, and motility characteristics of ram spermatozoa
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