Baumann P, Jackson S P
Wellcome/Cancer Research Campaign Institute, Cambridge University, United Kingdom.
Proc Natl Acad Sci U S A. 1996 Jun 25;93(13):6726-30. doi: 10.1073/pnas.93.13.6726.
Life falls into three fundamental domains--Archaea, Bacteria, and Eucarya (formerly archaebacteria, eubacteria, and eukaryotes,. respectively). Though Archaea lack nuclei and share many morphological features with Bacteria, molecular analyses, principally of the transcription and translation machineries, have suggested that Archaea are more related to Eucarya than to Bacteria. Currently, little is known about the archaeal cell division apparatus. In Bacteria, a crucial component of the cell division machinery is FtsZ, a GTPase that localizes to a ring at the site of septation. Interestingly, FtsZ is distantly related in sequence to eukaryotic tubulins, which also interact with GTP and are components of the eukaryotic cell cytoskeleton. By screening for the ability to bind radiolabeled nucleotides, we have identified a protein of the hyperthermophilic archaeon Pyrococcus woesei that interacts tightly and specifically with GTP. Furthermore, through screening an expression library of P. woesei genomic DNA, we have cloned the gene encoding this protein. Sequence comparisons reveal that the P. woesei GTP-binding protein is strikingly related in sequence to eubacterial FtsZ and is marginally more similar to eukaryotic tubulins than are bacterial FtsZ proteins. Phylogenetic analyses reinforce the notion that there is an evolutionary linkage between FtsZ and tubulins. These findings suggest that the archaeal cell division apparatus may be fundamentally similar to that of Bacteria and lead us to consider the evolutionary relationships between Archaea, Bacteria, and Eucarya.
生命分为三个基本领域——古菌、细菌和真核生物(以前分别称为古细菌、真细菌和真核生物)。尽管古菌没有细胞核,并且在许多形态特征上与细菌相似,但主要基于转录和翻译机制的分子分析表明,古菌与真核生物的关系比与细菌的关系更为密切。目前,人们对古菌的细胞分裂装置知之甚少。在细菌中,细胞分裂机制的一个关键组成部分是FtsZ,它是一种GTP酶,定位于隔膜形成部位的一个环上。有趣的是,FtsZ在序列上与真核微管蛋白有较远的关系,真核微管蛋白也与GTP相互作用,并且是真核细胞细胞骨架的组成部分。通过筛选结合放射性标记核苷酸的能力,我们鉴定出了嗜热古菌沃氏嗜热栖热菌中一种与GTP紧密且特异性相互作用的蛋白质。此外,通过筛选沃氏嗜热栖热菌基因组DNA的表达文库,我们克隆了编码该蛋白质的基因。序列比较显示,沃氏嗜热栖热菌的GTP结合蛋白在序列上与真细菌的FtsZ惊人地相关,并且与真核微管蛋白的相似性略高于细菌的FtsZ蛋白。系统发育分析强化了FtsZ和微管蛋白之间存在进化联系的观点。这些发现表明,古菌的细胞分裂装置可能在根本上与细菌的相似,并促使我们思考古菌、细菌和真核生物之间的进化关系。