The biosynthesis of biologically active proteins in mRNA-microinjected Xenopus oocytes.

H Soreq
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引用次数: 106

Abstract

The basic properties of mRNA-injected Xenopus oocytes as a heterologous system for the production of biologically active proteins will be reviewed. The advantages and limitations involved in the use of this in ovo system will be discussed, as compared with in vitro cell-free translation systems and with in vivo microinjected mammalian cells in culture. The different assay systems that have been utilized for the identification of the biological properties of oocyte-produced proteins will be described. This section will review the determination of properties such as binding of natural ligands, like heme or alpha-bungarotoxin; immunological recognition by antibodies; subcellular compartmentalization and/or secretion; various enzymatic catalytic activities; and induction in ovo of biological activities that affect other living cells in culture, such as those of interferon and of the T-cell receptor. The limitations involved in interpretation of results obtained using mRNA-injected oocytes will be critically reviewed. Special attention will be given to the effect of oocyte proteases and of changes in the endogenous translation rate on quantitative measurements of oocyte-produced proteins. In addition, the validity of the various measurement techniques will be evaluated. The various uses of bioassays of proteins produced in mRNA-injected Xenopus oocytes throughout the last decade will be reviewed. Nuclear and cytoplasmic injections, mRNA and protein turnover measurements and abundance calculations, and the use of in ovo bioassays for molecular cloning experiments will be discussed in this section. Finally, potential future uses of the oocyte system in various fields of research, such as immunology, neurobiology, and cell biology will be suggested.

mrna微注射非洲爪蟾卵母细胞中生物活性蛋白的合成。
本文综述了注射mrna的非洲爪蟾卵母细胞作为一种生产生物活性蛋白的异源系统的基本特性。与体外无细胞翻译系统和体内微注射培养的哺乳动物细胞相比,将讨论在卵细胞系统中使用这种翻译系统的优点和局限性。将描述用于鉴定卵母细胞产生的蛋白质的生物学特性的不同测定系统。本节将审查性质的确定,如天然配体的结合,如血红素或-班加罗毒素;抗体免疫识别;亚细胞区隔和/或分泌;各种酶催化活性;并在卵细胞中诱导影响培养中其他活细胞的生物活动,如干扰素和t细胞受体的生物活动。在解释使用mrna注射卵母细胞获得的结果时所涉及的局限性将被严格审查。将特别注意卵母细胞蛋白酶和内源性翻译率的变化对卵母细胞产生的蛋白质的定量测量的影响。此外,还将评估各种测量技术的有效性。在过去十年中,对注射mrna的非洲爪蟾卵母细胞中产生的蛋白质进行生物测定的各种用途进行了综述。本节将讨论核和细胞质注射,mRNA和蛋白质周转测量和丰度计算,以及分子克隆实验中卵内生物测定的使用。最后,提出了卵母细胞系统在免疫学、神经生物学和细胞生物学等研究领域的潜在应用前景。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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