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团藻无性生命周期中的蛋白质合成模式。

Protein synthetic patterns during the asexual life cycle of Volvox carteri.

作者信息

Kirk D L, Kirk M M

出版信息

Dev Biol. 1983 Apr;96(2):493-506. doi: 10.1016/0012-1606(83)90186-0.

DOI:10.1016/0012-1606(83)90186-0
PMID:6832480
Abstract

The polypeptide labeling patterns of somatic cells, gonidia (asexual reproductive cells), embryos, and juvenile spheroids of Volvox carteri cultures synchronized by a light/dark cycle were studied as a function of developmental stage and incubation condition. Specimens were exposed to 35SO=4 for 1-hr periods at selected intervals throughout the asexual life cycle; proteins were then extracted and analyzed by one-dimensional sodium dodecyl sulfate-polyacrylamide gel electrophoresis (SDS-PAGE) followed by fluorography. Although sulfation accounts for more than half the 35S incorporated, the conditions of extraction and electrophoresis employed resulted in exclusion of most sulfated products and inclusion of nearly all products bearing incorporated sulfur amino acids in the electrophoretic analysis. Hence SDS-PAGE profiles reflect relative rates of synthesis of major polypeptides. The first phase of these studies involved examination of stage-specific differences in protein synthetic patterns. Because a single developmental stage exhibits different protein synthetic patterns in light and darkness, detailed developmental comparisons were made only on organisms or cells exposed to label in the light. They yielded the following results: Shortly after the completion of embryogenesis (while all cells are still linked by numerous cytoplasmic bridges) presumptive somatic cells and gonidia exhibit a nearly identical pattern of labeling of the major polypeptides. In just a few hours, however, as cytoplasmic bridges begin to break down, the synthetic patterns of the two cell types begin to diverge; with passing time this divergence becomes progressively greater. By the time gonidia are mature, the patterns of labeling of major polypeptides by somatic cells and gonidia exhibit far more differences than similarities. Embryos derived from these mature gonidia then exhibit numerous, reproducible, stage-specific changes in polypeptide labeling throughout embryogenesis. However, two glycoproteins that previous authors implicated in the control of the differentiative cleavage division are here shown to be labeled in the parental somatic cells, not in the embryos as was previously supposed; hence a central role for them in embryonic development seems highly unlikely. In the second phase of this study the effects of light on protein synthetic patterns of organisms at selected developmental stages were analyzed. At all stages marked, rapid, reversible changes in the pattern of labeling of major polypeptides occur when cultures are transferred from light to dark or vice versa, but these changes are most marked in juvenile spheroids at the end of the dark period during which they had completed their embryogenesis. Some, but by no means all, of the changes induced by light can be attributed to stimulated synthesis of chloroplast proteins, on both chloroplast and cytosol ribosomes. The proteins made at the beginning of one light period are not identical to those made at the end of the preceding light period...

摘要

研究了通过光/暗周期同步化的卡特氏团藻培养物中体细胞、藻殖段(无性生殖细胞)、胚胎和幼年球体的多肽标记模式,作为发育阶段和培养条件的函数。在无性生命周期的选定间隔期间,将标本暴露于35SO₄ 1小时;然后提取蛋白质,并通过一维十二烷基硫酸钠-聚丙烯酰胺凝胶电泳(SDS-PAGE)进行分析,随后进行荧光自显影。尽管硫酸化占掺入的35S的一半以上,但所采用的提取和电泳条件导致在电泳分析中排除了大多数硫酸化产物,并包含了几乎所有含有掺入硫氨基酸的产物。因此,SDS-PAGE图谱反映了主要多肽的相对合成速率。这些研究的第一阶段涉及检查蛋白质合成模式中的阶段特异性差异。由于单个发育阶段在光照和黑暗中表现出不同的蛋白质合成模式,因此仅对在光照下暴露于标记物的生物体或细胞进行了详细的发育比较。它们产生了以下结果:在胚胎发生完成后不久(当所有细胞仍通过众多细胞质桥连接时),假定的体细胞和藻殖段在主要多肽的标记模式上表现出几乎相同的模式。然而,在短短几个小时内,随着细胞质桥开始分解,两种细胞类型的合成模式开始 diverge;随着时间的推移,这种差异变得越来越大。到藻殖段成熟时,体细胞和藻殖段在主要多肽的标记模式上表现出的差异远多于相似之处。源自这些成熟藻殖段的胚胎在整个胚胎发生过程中在多肽标记方面表现出许多可重复的、阶段特异性的变化。然而,先前作者认为参与分化性卵裂控制的两种糖蛋白在这里显示在亲本体细胞中被标记,而不是像先前假设的那样在胚胎中被标记;因此,它们在胚胎发育中的核心作用似乎极不可能。在这项研究的第二阶段,分析了光对选定发育阶段生物体蛋白质合成模式的影响。在所有标记阶段,当培养物从光照转移到黑暗或反之亦然时,主要多肽的标记模式会发生明显、快速、可逆的变化,但这些变化在幼年球体在黑暗期结束时最为明显,在此期间它们完成了胚胎发生。光诱导的一些但绝不是所有变化可归因于叶绿体蛋白在叶绿体和胞质核糖体上的合成增加。在一个光照期开始时合成的蛋白质与在前一个光照期结束时合成的蛋白质不同…… (注:原文中“diverge”未翻译,因为不确定其准确含义,需结合上下文进一步确定其准确的中文表述)

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