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蟋蟀胚胎发育过程中的卵黄磷蛋白加工与蛋白质合成

Vitellin processing and protein synthesis during cricket embryogenesis.

作者信息

Handley H L, Estridge B H, Bradley J T

机构信息

Department of Zoology, Auburn University, AL 36849, USA.

出版信息

Insect Biochem Mol Biol. 1998 Nov;28(11):875-85. doi: 10.1016/s0965-1748(98)00070-8.

Abstract

At the start of insect embryogenesis most of the protein mass of the egg cytoplasm exists as vitellin (Vt) obtained endocytically during vitellogenesis. Of the new embryo polypeptides (EP) appearing in the egg during embryogenesis, many are synthesized de novo, while, in some species, others derive from developmentally programmed partial proteolysis of Vt. Earlier we showed that by the end of vitellogenesis the two native Vts in Acheta domesticus exist in opposing gradients along the longitudinal axis of the egg. Here we hypothesize that this ooplasmic Vt distribution presents a milieu for Vt processing out of which region-specific regulatory molecules could arise. The metabolic origin and stage-specific patterns of seven predominant EPs (EP 1-7) identified by SDS-PAGE were examined and the results correlated with developmental morphology during the 14 days of embryogenesis. Based on antibody reactivity, peptide mapping and in vitro radiolabeling, we determined that EPs 1-3, 6 and 7 are Vt-derived, while EPs 4 and 5 are produced de novo by the embryo. The five Vt-derived EPs appear during the first 24 h of embryogenesis when migrating cleavage nuclei and associated cytoplasm form the cellular blastoderm, and levels of EPs 4 and 5 increase during days 4-6 of embryogenesis when katatrepsis and yolk mass contraction occur. Positive periodic acid-Schiff staining indicated that EPs 1-3 and their Vt-precursor polypeptides are glycoproteins. This work shows that developmental stage-specific Vt processing occurs during A. domesticus embryogenesis and points next to investigation of the functional significance of Vt cleavage products during development.

摘要

在昆虫胚胎发生开始时,卵细胞质中的大部分蛋白质以卵黄蛋白(Vt)的形式存在,这些卵黄蛋白是在卵黄发生过程中通过内吞作用获得的。在胚胎发生过程中出现在卵中的新胚胎多肽(EP)中,许多是重新合成的,而在某些物种中,其他一些则来自Vt的发育程序性部分蛋白水解。早些时候我们发现,在卵黄发生结束时,家蟋蟀的两种天然Vt沿着卵的纵轴以相反的梯度存在。在这里,我们假设这种卵质Vt分布为Vt加工提供了一个环境,从中可能产生区域特异性调节分子。通过SDS-PAGE鉴定的七种主要EP(EP 1-7)的代谢起源和阶段特异性模式进行了研究,结果与胚胎发生14天期间的发育形态相关。基于抗体反应性、肽图谱分析和体外放射性标记,我们确定EP 1-3、6和7是Vt衍生的,而EP 4和5是由胚胎重新合成的。五种Vt衍生的EP在胚胎发生的前24小时出现,此时迁移的卵裂核和相关细胞质形成细胞胚盘,而EP 4和5的水平在胚胎发生的第4-6天增加,此时发生内陷和卵黄块收缩。阳性过碘酸-希夫染色表明EP 1-3及其Vt前体多肽是糖蛋白。这项工作表明,在家蟋蟀胚胎发生过程中发生了发育阶段特异性的Vt加工,接下来指向对Vt裂解产物在发育过程中的功能意义的研究。

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