Pu R T, Dasso M
Laboratory of Molecular Embryology, National Institute of Child Health and Human Development, National Institutes of Health, Bethesda, Maryland 20892-5431, USA.
Mol Biol Cell. 1997 Oct;8(10):1955-70. doi: 10.1091/mbc.8.10.1955.
Ran is a small GTPase that is essential for nuclear transport, mRNA processing, maintenance of structural integrity of nuclei, and cell cycle control. RanBP1 is a highly conserved Ran guanine nucleotide dissociation inhibitor. We sought to use Xenopus egg extracts for the development of an in vitro assay for RanBP1 activity in nuclear assembly, protein import, and DNA replication. Surprisingly, when we used anti-RanBP1 antibodies to immunodeplete RanBP1 from Xenopus egg extracts, we found that the extracts were also depleted of RCC1, Ran's guanine nucleotide exchange factor, suggesting that these proteins form a stable complex. In contrast to previous observations using extracts that had been depleted of RCC1 only, extracts lacking both RanBP1 and RCC1 (codepleted extracts) did not exhibit defects in assays of nuclear assembly, nuclear transport, or DNA replication. Addition of either recombinant RanBP1 or RCC1 to codepleted extracts to restore only one of the depleted proteins caused abnormal nuclear assembly and inhibited nuclear transport and DNA replication in a manner that could be rescued be further addition of RCC1 or RanBP1, respectively. Exogenous mutant Ran proteins could partially rescue nuclear function in extracts without RanBP1 or without RCC1, in a manner that was correlated with their nucleotide binding state. These results suggest that little RanBP1 or RCC1 is required for nuclear assembly, nuclear import, or DNA replication in the absence of the other protein. The results further suggest that the balance of GTP- and GDP-Ran is critical for proper nuclear assembly and function in vitro.
Ran是一种小GTP酶,对核运输、mRNA加工、细胞核结构完整性的维持以及细胞周期调控至关重要。RanBP1是一种高度保守的Ran鸟嘌呤核苷酸解离抑制剂。我们试图利用非洲爪蟾卵提取物开发一种体外测定法,用于检测RanBP1在核组装、蛋白质导入和DNA复制中的活性。令人惊讶的是,当我们使用抗RanBP1抗体从非洲爪蟾卵提取物中免疫去除RanBP1时,我们发现提取物中也缺失了RCC1(Ran的鸟嘌呤核苷酸交换因子),这表明这些蛋白质形成了一个稳定的复合物。与之前仅使用去除了RCC1的提取物的观察结果不同,缺乏RanBP1和RCC1的提取物(共去除提取物)在核组装、核运输或DNA复制测定中未表现出缺陷。向共去除提取物中添加重组RanBP1或RCC1以仅恢复其中一种缺失的蛋白质,会导致异常的核组装,并以一种分别进一步添加RCC1或RanBP1可挽救的方式抑制核运输和DNA复制。外源性突变Ran蛋白可以部分挽救缺乏RanBP1或缺乏RCC1的提取物中的核功能,其方式与其核苷酸结合状态相关。这些结果表明,在缺乏另一种蛋白质的情况下,核组装、核导入或DNA复制所需的RanBP1或RCC1很少。结果还进一步表明,GTP-Ran和GDP-Ran的平衡对于体外正常的核组装和功能至关重要。