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热休克改变果蝇细胞中的核糖核蛋白组装。

Heat shock alters nuclear ribonucleoprotein assembly in Drosophila cells.

作者信息

Mayrand S, Pederson T

出版信息

Mol Cell Biol. 1983 Feb;3(2):161-71. doi: 10.1128/mcb.3.2.161-171.1983.

Abstract

Heterogeneous nuclear RNA is normally complexed with a specific set of proteins, forming ribonucleoprotein particles termed hnRNP. These particles are likely to be involved in mRNA processing. We have found that the structure of hnRNP is profoundly altered during the heat shock response in Drosophila cultured cells. Although hnRNA continues to be synthesized at a near-normal rate during heat shock, its assembly into hnRNP is incomplete, as evidenced by a greatly decreased protein content of the particles in Cs2SO4 density gradients. RNA-protein cross-linking conducted in vivo (Mayrand and Pederson, Proc. Natl. Acad. Sci. U.S.A. 78:2208-2212, 1981) also reveals that hnRNA made during heat shock is complexed with greatly reduced amounts of protein. The block of hnRNP assembly occurs immediately upon heat shock, even before the onset of heat shock protein synthesis. Additional experiments reveal that hnRNP assembled normally at 25 degrees C subsequently disassembles during heat shock. The capacity for normal hnRNP assembly is gradually restored after heat-shocked cells are returned to 25 degrees C. Heat-shocked mammalian cells also show a similar block in hnRNP assembly. We suggest that incomplete assembly of hnRNP during heat shock leads to abortive processing of most mRNA precursors and favors the processing or export (or both) of others whose pathway of nuclear maturation is less dependent on, or even independent of, normal hnRNP particle structure. This hypothesis is compatible with a large number of previous observations.

摘要

不均一核RNA通常与一组特定的蛋白质结合,形成称为核不均一核糖核蛋白颗粒(hnRNP)的核糖核蛋白颗粒。这些颗粒可能参与信使核糖核酸(mRNA)的加工过程。我们发现在果蝇培养细胞的热休克反应过程中,hnRNP的结构发生了深刻变化。尽管在热休克期间hnRNA仍以接近正常的速率合成,但其组装成hnRNP的过程并不完整,这在Cs2SO4密度梯度中颗粒的蛋白质含量大幅降低中得到了证明。体内进行的RNA-蛋白质交联实验(Mayrand和Pederson,《美国国家科学院院刊》78:2208 - 2212,1981)也表明,热休克期间产生的hnRNA与大量减少的蛋白质结合。hnRNP组装的阻断在热休克后立即发生,甚至在热休克蛋白合成开始之前。进一步的实验表明,在25摄氏度时正常组装的hnRNP在热休克期间会随后解体。热休克细胞恢复到25摄氏度后,正常hnRNP组装的能力会逐渐恢复。热休克的哺乳动物细胞在hnRNP组装方面也表现出类似的阻断现象。我们认为,热休克期间hnRNP组装不完全会导致大多数mRNA前体的加工失败,并有利于其他一些mRNA前体的加工或输出(或两者兼有),这些mRNA前体的核成熟途径对正常hnRNP颗粒结构的依赖性较小,甚至不依赖。这一假设与大量先前的观察结果相符。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/025b/368518/df7904801faf/molcellb00156-0022-a.jpg

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