Liu Y, Liang S, Tartakoff A M
Department of Pathology and Cell Biology Program, Case Western Reserve University School of Medicine, Cleveland, OH 44106, USA.
EMBO J. 1996 Dec 2;15(23):6750-7.
Heat shock causes major positive and negative changes in gene expression, drastically alters the appearance of the nucleolus and inhibits rRNA synthesis. We here show that it causes many yeast nucleolar proteins, including the fibrillarin homolog Nop1p, to relocate to the cytoplasm. Relocation depends on several proteins implicated in mRNA transport (Mtrps) and is reversible. Two observations indicate, surprisingly, that disassembly results from a reduction in Ssa protein (Hsp70) levels: (i) selective depletion of Ssa1p leads to disassembly of the nucleolus; (ii) preincubation at 37 degrees C protects the nucleolus against disassembly by heat shock, unless expression of Ssa proteins is specifically inhibited. We observed that heat shock or reduction of Ssa1p levels inhibits protein import into the nucleus and therefore we propose that inhibition of import leads to disassembly of the nucleolus. These observations provide a simple explanation of the effects of heat shock on the anatomy of the nucleolus and rRNA transcription. They also extend understanding of the path of nuclear export. Since a number of nucleoplasmic proteins also relocate upon heat shock, these observations can provide a general mechanism for regulation of gene expression. Relocation of the hnRNP-like protein Mtr13p (= Npl3p, Nop3p), explains the heat shock sensitivity of export of average poly(A)+ RNA. Strikingly, Hsp mRNA export appears not to be affected.
热休克会导致基因表达发生重大的正向和负向变化,极大地改变核仁的外观并抑制rRNA合成。我们在此表明,热休克会导致许多酵母核仁蛋白,包括原纤维蛋白同源物Nop1p,重新定位到细胞质中。这种重新定位依赖于几种与mRNA转运相关的蛋白(Mtrps),并且是可逆的。令人惊讶的是,有两个观察结果表明,核仁解体是由于Ssa蛋白(Hsp70)水平降低所致:(i)选择性耗尽Ssa1p会导致核仁解体;(ii)在37℃下预孵育可保护核仁免受热休克引起的解体,除非Ssa蛋白的表达受到特异性抑制。我们观察到热休克或Ssa1p水平降低会抑制蛋白质向细胞核的导入,因此我们提出导入的抑制会导致核仁解体。这些观察结果为热休克对核仁结构和rRNA转录的影响提供了一个简单的解释。它们还扩展了对核输出途径的理解。由于许多核质蛋白在热休克时也会重新定位,这些观察结果可以为基因表达调控提供一种通用机制。hnRNP样蛋白Mtr13p(= Npl3p,Nop3p)的重新定位解释了平均多聚腺苷酸加尾RNA输出的热休克敏感性。引人注目的是,Hsp mRNA的输出似乎不受影响。