Tsuprun V, Rajagopal B S, Anderson D
Department of Cell Biology, University of Minnesota, Minneapolis 55455, USA.
J Struct Biol. 1995 Nov-Dec;115(3):258-66. doi: 10.1006/jsbi.1995.1050.
The Bacillus subtilis GroESL chaperonin was isolated by sucrose density gradient centrifugation and the constituent GroES and GroEL moieties were purified by electrophoresis in agarose. Electron microscopic images of negatively stained GroEL and GroES oligomers and GroESL complexes were averaged using a reference-free alignment method. The GroEL and GroES particles had the sevenfold symmetry characteristic of their Escherichia coli counterparts. GroESL complexes, reconstituted efficiently in vitro from GroEL and GroES in the absence of added ADP or ATP, had the characteristic bullet- and football-like shapes in side view. Purified bacteriophage phi 29 head-tail connectors having a mass in excess of 0.4 MDa were shown to bind to GroESL at the end opposite to the GroES. The same GroESL-connector complexes were isolated from phage-infected cells in which capsid assembly was blocked, and thus the complex may have functional significance in phi 29 morphogenesis.
通过蔗糖密度梯度离心法分离枯草芽孢杆菌GroESL伴侣蛋白,并通过琼脂糖电泳纯化其组成部分GroES和GroEL片段。使用无参考对齐方法对负染色的GroEL和GroES寡聚体以及GroESL复合物的电子显微镜图像进行平均处理。GroEL和GroES颗粒具有与其大肠杆菌对应物相同的七重对称性特征。在不添加ADP或ATP的情况下,由GroEL和GroES在体外高效重构的GroESL复合物在侧视图中具有特征性的子弹状和足球状形状。已证明质量超过0.4 MDa的纯化噬菌体phi 29头尾连接体在与GroES相对的一端与GroESL结合。从衣壳组装受阻的噬菌体感染细胞中分离出相同的GroESL-连接体复合物,因此该复合物可能在phi 29形态发生中具有功能意义。