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一种位于核仁的热敏感细胞功能。

A heat-sensitive cellular function located in the nucleolus.

作者信息

Simard R, Bernhard W

出版信息

J Cell Biol. 1967 Jul;34(1):61-76. doi: 10.1083/jcb.34.1.61.

Abstract

Striking nucleolar lesions occur in cultured cells after exposure to supranormal temperatures. These lesions appear at 42 degrees C and consist of a loss of the granular ribonucleoprotein (RNP) component and intranucleolar chromatin, and a disappearance of the nucleolar reticulum. The material remaining in the morphologically homogeneous nucleolus is a large amount of closely packed fibrillar RNP. The lesions remain identical as temperature increases to 45 degrees C. These alterations are reversible when the cells are returned to 37 degrees C and are associated with the reappearance of an exaggerated amount of intranucleolar chromatin and granular RNP. High-resolution radioautography indicates that after thermic shock nucleolar RNA synthesis is inhibited whereas extranucleolar sites are preserved: it also suggests that the granular RNP is reconverted to fibrillar RNP probably by simple unraveling. The results prove the existence of heat-sensitive cellular functions in the nucleolus which deal with the DNA-dependent RNA synthesis. The precise site of action is assumed to involve hydrogen bonds, resulting in configurational changes in nucleolar RNP and affecting the stability of the DNA molecule. The subsequent events in nucleolar RNA synthesis are discussed in light of the morphologic and biochemical effects of actinomycin D on the nucleolus.

摘要

在培养细胞暴露于超常温度后会出现明显的核仁损伤。这些损伤在42摄氏度时出现,包括颗粒状核糖核蛋白(RNP)成分和核仁内染色质的丢失,以及核仁网的消失。残留在形态上均匀的核仁中的物质是大量紧密堆积的纤维状RNP。当温度升至45摄氏度时,损伤保持不变。当细胞恢复到37摄氏度时,这些改变是可逆的,并且与核仁内染色质和颗粒状RNP的大量再次出现有关。高分辨率放射自显影表明,热休克后核仁RNA合成受到抑制,而核仁外位点得以保留:这也表明颗粒状RNP可能通过简单的解缠而重新转化为纤维状RNP。结果证明核仁中存在处理依赖于DNA的RNA合成的热敏感细胞功能。作用的确切位点被认为涉及氢键,导致核仁RNP的构型变化并影响DNA分子的稳定性。根据放线菌素D对核仁的形态学和生化作用,讨论了核仁RNA合成中的后续事件。

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[Effect of supra-optimal temperature on nucleolar ribonucleoproteins and RNA. 1. Ultrastructural study].
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