Harauz G, Cicicopol C, Hegerl R, Cejka Z, Goldie K, Santarius U, Engel A, Baumeister W
Abteilung Molekulare Strukturbiologie, Max-Planck-Institut für Biochemie, Am Klopferspitz 18a, Martinsried bei München, D-82152, Germany.
J Struct Biol. 1996 Mar-Apr;116(2):290-301. doi: 10.1006/jsbi.1996.0044.
The phosphoenolpyruvate synthase of the hyperthermophilic archaeon Staphylothermus marinus forms an unusually large homomultimeric complex of 93 kDa subunits. Electron image analysis of negatively stained and low-dose unstained preparations showed that the complex has a single, stable characteristic view and a well-preserved core with threefold rotational symmetry. The periphery of the assembly is composed of a nebulous, possibly flexible, component. Mass measurements by scanning transmission electron microscopy yielded a molecular weight of 2250 +/- 230 kDa, confirming the well-defined nature of the structure and indicating that it is composed of 24 +/- 2.5 subunits. The stability and symmetry of the characteristic projection views suggest a polyhedral three-dimensional architecture. The novel quaternary arrangement of this enzyme might be a consequence of its adaptation to an extreme environment.
嗜热古菌海栖热袍菌的磷酸烯醇丙酮酸合酶形成了一种由93 kDa亚基组成的异常大的同多聚体复合物。对负染和低剂量未染色制剂的电子图像分析表明,该复合物具有单一、稳定的特征视图和一个保存完好的具有三重旋转对称性的核心。装配体的外围由一个模糊的、可能具有柔性的成分组成。通过扫描透射电子显微镜进行的质量测量得出分子量为2250 +/- 230 kDa,证实了该结构的明确性质,并表明它由24 +/- 2.5个亚基组成。特征投影视图的稳定性和对称性表明其具有多面体三维结构。这种酶新颖的四级排列可能是其适应极端环境的结果。