Staub Eike, Fiziev Petko, Rosenthal André, Hinzmann Bernd
metaGen Pharmaceuticals GmbH, Berlin, Germany.
Bioessays. 2004 May;26(5):567-81. doi: 10.1002/bies.20032.
Recently, the first investigation of nucleoli using mass spectrometry led to the identification of 271 proteins. This represents a rich resource for a comprehensive investigation of nucleolus evolution. We applied a protocol for the identification of known and novel conserved protein domains of the nucleolus, resulting in the identification of 115 known and 91 novel domain profiles. The phyletic distribution of nucleolar protein domains in a collection of complete proteomes of selected organisms from all domains of life confirms the archaebacterial origin of the core machinery for ribosome maturation and assembly, but also reveals substantial eubacterial and eukaryotic contributions to nucleolus evolution. We predict that, in different phases of nucleolus evolution, protein domains with different biochemical functions were recruited to the nucleolus. We suggest a model for the late and continuous evolution of the nucleolus in early eukaryotes and argue against an endosymbiotic origin of the nucleolus and the nucleus. Supplementary material for this article can be found on the BioEssays website at http://www.interscience.wiley.com/jpages/0265-9247/suppmat/index.html.
最近,首次利用质谱法对核仁进行的研究鉴定出了271种蛋白质。这为全面研究核仁进化提供了丰富资源。我们应用了一种方案来鉴定核仁中已知和新的保守蛋白质结构域,结果鉴定出了115个已知和91个新的结构域图谱。核仁蛋白质结构域在来自生命各领域的选定生物体的完整蛋白质组集合中的系统发育分布证实了核糖体成熟和组装核心机制的古细菌起源,但也揭示了真细菌和真核生物对核仁进化的重大贡献。我们预测,在核仁进化的不同阶段,具有不同生化功能的蛋白质结构域被招募到核仁中。我们提出了一个早期真核生物中核仁后期持续进化的模型,并反对核仁和细胞核的内共生起源。本文的补充材料可在《生物论文》网站http://www.interscience.wiley.com/jpages/0265-9247/suppmat/index.html上找到。