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鸡囊胚中热休克基因的差异表达。

Differential heat shock gene expression in chick blastula.

作者信息

Zagris Nikolas, Matthopoulos Demetrios

机构信息

Division of Genetics and Cell and Developmental Biology, Department of Biology, University of Patras, Patras, Greece.

Laboratory of General Biology, Medical School, University of Ioannina, Ioannina, Greece.

出版信息

Rouxs Arch Dev Biol. 1986 Aug;195(6):403-407. doi: 10.1007/BF00402874.

Abstract

The component areas of chick blastula show differential expression of heat shock genes. The area opaca (ao), marginal zone (mz) and central area (ca) components of the epiblast display distinct quantitative and minor qualitative differences in the heat-induced and heat-repressible proteins, but are clearly different from the primary hypoblast (endoderm) in their expression of a given stress protein (hsp) as a response to heat shock. The major proteins synthesized in the component areas of epiblast in response to heat shock include hsp 18, 24, 70 and 89 Kd. Two-dimensional electrophoresis shows that each of these proteins consists of multiple charged species. The hypoblast expresses only hsp 70 Kd at non-significant levels and shows marked inhibition in the level of synthesis of heat-shock-repressible proteins. Heat shock during the blastula stage results in an increase in the size of the blastoderm and disrupts normal embryonic development. The heat shock genes provide an important molecular marker, which attests to regional specification in the chick blastula.

摘要

鸡囊胚的组成区域显示出热休克基因的差异表达。外胚层的暗区(ao)、边缘区(mz)和中央区(ca)成分在热诱导和热抑制蛋白方面表现出明显的数量差异和细微的质量差异,但在对热休克的反应中,它们在特定应激蛋白(hsp)的表达上与初级下胚层(内胚层)明显不同。外胚层组成区域对热休克反应合成的主要蛋白质包括18、24、70和89 Kd的热休克蛋白。二维电泳显示,这些蛋白质中的每一种都由多个带电荷的种类组成。下胚层仅以非显著水平表达70 Kd的热休克蛋白,并且在热休克可抑制蛋白的合成水平上表现出明显的抑制。囊胚期的热休克导致胚盘大小增加,并破坏正常的胚胎发育。热休克基因提供了一个重要的分子标记,证明了鸡囊胚中的区域特化。

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