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发育中的海胆胚胎中一种卵黄糖蛋白复合物的变化分析。

Analysis of changes in a yolk glycoprotein complex in the developing sea urchin embryo.

作者信息

Kari B E, Rottmann W L

出版信息

Dev Biol. 1985 Mar;108(1):18-25. doi: 10.1016/0012-1606(85)90004-1.

Abstract

A sea urchin yolk glycoprotein complex (YGC) was isolated from several developmental stages by velocity centrifugation on sucrose gradients. The YGCs were analyzed by SDS-polyacrylamide gel electrophoresis to determine if the molecular composition of the YGC was changing during development. The mass of the YGC did not change with development. However, as development proceeded there were significant changes in the glycoprotein composition of the YGC isolated from either Lytechinus pictus or Strongylocentrotus purpuratus embryos. In both species the YGC isolated from eggs contained three major glycoproteins. The most abundant one had an apparent molecular weight of 190,000 and was designated GP-190. During development the three major egg YGC glycoproteins decreased in relative amounts as intermediate-molecular-weight glycoproteins increased. While these changes were detected in YGCs isolated from either species, the rate of change was much greater in S. purpuratus than in L. pictus. The most significant difference was observed in the rate of decrease in GP-190. In S. purpuratus, GP-190 showed a significant decrease by 8-10 hr postfertilization, while a similar decrease did not occur in L. pictus YGCs until 72 hr postfertilization. To determine how these changes were occurring, both amino acid and carbohydrate analyses were done on the YGC isolated from various stages. From examination of these data, it appeared that the molecular composition of the YGC was changing via very limited proteolysis. The intermediate and low-molecular-weight glycoproteins generated apparently remain assembled in the YGC, thus conserving its mass.

摘要

通过在蔗糖梯度上进行速度离心,从几个发育阶段分离出海胆卵黄糖蛋白复合物(YGC)。通过SDS-聚丙烯酰胺凝胶电泳分析YGC,以确定YGC的分子组成在发育过程中是否发生变化。YGC的质量在发育过程中没有变化。然而,随着发育的进行,从彩绘海胆(Lytechinus pictus)或紫海胆(Strongylocentrotus purpuratus)胚胎中分离出的YGC的糖蛋白组成发生了显著变化。在这两个物种中,从卵中分离出的YGC都含有三种主要的糖蛋白。最丰富的一种糖蛋白的表观分子量为190,000,被命名为GP-190。在发育过程中,随着中等分子量糖蛋白的增加,三种主要的卵YGC糖蛋白的相对含量下降。虽然在从这两个物种中分离出的YGC中都检测到了这些变化,但紫海胆中的变化速率比彩绘海胆中的要大得多。在GP-190的下降速率中观察到最显著的差异。在紫海胆中,受精后8-10小时,GP-190显著下降,而在彩绘海胆YGC中,直到受精后72小时才出现类似的下降。为了确定这些变化是如何发生的,对从不同阶段分离出的YGC进行了氨基酸和碳水化合物分析。通过对这些数据的检查,似乎YGC的分子组成是通过非常有限的蛋白水解作用而发生变化的。产生的中等和低分子量糖蛋白显然仍组装在YGC中,从而保持其质量。

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