Schnyder T, Gross H, Winkler H, Eppenberger H M, Wallimann T
Institute of Cell Biology, Swiss Federal Institute of Technology, Zürich.
J Cell Biol. 1991 Jan;112(1):95-101. doi: 10.1083/jcb.112.1.95.
The combination of high-resolution tantalum/tungsten (Ta/W) shadowing at very low specimen temperature (-250 degrees C) under ultrahigh vacuum (less than 2 x 10(-9) mbar) with circular harmonic image averaging revealed details on the surface structure of mitochondrial creatine kinase (Mi-CK) molecules with a resolution less than 2.5 nm. Mi-CK octamers exhibit a cross-like surface depression dividing the square shaped projection of 10 x 10 nm into four equally sized subdomains, which correspond to the four dimers forming the octameric Mi-CK molecule. By a combination of positive staining (with uranyl acetate) and heavy metal shadowing, internal structures as well as the surface relief of Mi-CK were visualized at the same time at high resolution. Computational image analysis revealed only a single projection class of molecules, but the ability of Mi-CK to form linear filaments, as well as geometrical considerations concerning the formation of octamers by four equal, asymmetric dimers, suggest the existence of at least two distinct faces on the molecule. By image processing of Mi-CK filaments a side view of the octamer differing from the top-bottom projections of single molecules became evident showing a funnel-like access each form the top and bottom of the octamer connected by a central channel. The general structure of the Mi-CK octamer described here is relevant to the localization of the molecule at the inner-outer mitochondrial contact sites and to the function of Mi-CK as an "energy channeling" molecule.
在超低温(-250摄氏度)、超高真空(小于2×10⁻⁹毫巴)条件下,通过高分辨率钽/钨(Ta/W)阴影成像技术,并结合圆谐波图像平均法,揭示了线粒体肌酸激酶(Mi-CK)分子表面结构的细节,分辨率小于2.5纳米。Mi-CK八聚体呈现出十字形表面凹陷,将10×10纳米的方形投影分成四个大小相等的亚结构域,这四个亚结构域对应于构成八聚体Mi-CK分子的四个二聚体。通过阳性染色(用醋酸铀)和重金属阴影成像相结合的方法,同时以高分辨率观察到了Mi-CK的内部结构和表面形貌。计算机图像分析仅揭示了分子的单一投影类别,但Mi-CK形成线性细丝的能力,以及关于由四个相等的不对称二聚体形成八聚体的几何考虑,表明该分子上至少存在两个不同的面。通过对Mi-CK细丝进行图像处理,八聚体的侧视图与单个分子的上下投影不同,显示出从八聚体顶部和底部通过中央通道相连的漏斗状通道。这里描述的Mi-CK八聚体的总体结构与该分子在线粒体内外接触位点的定位以及Mi-CK作为“能量通道”分子的功能有关。