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在团藻发育的关键阶段,蛋白质合成的翻译调控对光作出响应。

Translational regulation of protein synthesis, in response to light, at a critical stage of Volvox development.

作者信息

Kirk M M, Kirk D L

出版信息

Cell. 1985 Jun;41(2):419-28. doi: 10.1016/s0092-8674(85)80015-5.

Abstract

In Volvox cultures synchronized by a light-dark cycle, juveniles containing presumptive somatic and reproductive cells are produced during the dark, but their cells do not differentiate until after the lights come on. The pattern of protein synthesis changes rapidly after the lights come on. Action spectra and effects of photosynthesis inhibitors indicate that this protein synthetic change is not simply a consequence of renewed flow of energy from illuminated chloroplasts. Actinomycin, at a level adequate to block the response to heat shock, has virtually no effect on the response of the same cells to light; furthermore, RNAs isolated from unilluminated and illuminated juveniles yield indistinguishable in vitro translation products. We conclude, therefore, that this effect of light is exerted almost exclusively at the translational level, generating one of the most striking examples of translational regulation yet described.

摘要

在通过明暗循环同步的团藻培养物中,含有假定体细胞和生殖细胞的幼体在黑暗中产生,但它们的细胞直到光照后才会分化。光照后蛋白质合成模式迅速变化。光合作用抑制剂的作用光谱和效应表明,这种蛋白质合成变化并非仅仅是来自受光照叶绿体的能量重新流动的结果。放线菌素在足以阻断对热休克反应的水平下,对相同细胞对光的反应几乎没有影响;此外,从未受光照和受光照的幼体中分离出的RNA产生无法区分的体外翻译产物。因此,我们得出结论,光的这种作用几乎完全在翻译水平上发挥,产生了迄今为止所描述的最显著的翻译调控例子之一。

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