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Three-Dimensional Structure of Bovine NADH: Ubiquinone Oxidoreductase of the Mitochondrial Respiratory Chain

机译:牛NADH的三维结构:线粒体呼吸链的泛醌氧化还原酶。

摘要

We have studied the structure of bovine heart mitochondrial NADH:ubiquinone (Q) oxidoreductase (EC 1.6.99.3) by image analysis of electron micrographs. A three-dimensional reconstruction was calculated from a tilt-series of a two-dimensional crystal of the molecule. Our interpretation of the position of the molecule in the unit cell of the crystal is supported by additional (low-resolution) analysis of images of single molecules. The three-dimensional reconstruction was calculated with the aid of an iterative real-space reconstruction algorithm. The various projections used as input to the algorithm were obtained by averaging the images of the tilted crystal through a Fourier-space peak-filtering procedure. The reconstructed unit cell measures 15.2 × 15.2 nm in the plane of the two-dimensional crystal and has a height of 10-11 nm. The unit cell contains one molecule consisting of four large subunits. At the present resolution of about 1.3 nm in the untilted projection, these four monomers are seen as two dimers related by a two-fold axis. Two views of the single particles have been recognized; they are the top and side view of the building block of the crystal. After computer image alignment and correspondence analysis, clusters of similar particles have been averaged. In the averages an uneven stain distribution is seen around the molecules, which may result from preferential staining of hydrophilic parts of the molecule. The molecular mass of the whole molecule was determined from scanning transmission electron microscopy measurements as (1.6 ± 0.2) · 10^6 daltons.
机译:我们已经通过电子显微镜图像分析研究了牛心脏线粒体NADH:泛醌(Q)氧化还原酶(EC 1.6.99.3)的结构。从分子的二维晶体的倾斜序列计算三维重建。我们对晶体晶胞中分子位置的解释得到了对单个分子图像的额外(低分辨率)分析的支持。借助迭代实空间重构算法来计算三维重构。通过傅立叶空间峰值滤波过程对倾斜晶体的图像求平均,可以得到用作算法输入的各种投影。重建的晶胞在二维晶体平面中的尺寸为15.2×15.2 nm,高度为10-11 nm。晶胞包含一个由四个大亚基组成的分子。在当前投影中约1.3 nm的分辨率下,这四种单体被视为由一个双轴关联的两个二聚体。人们已经认识到单个粒子的两种观点。它们是晶体构件的俯视图和侧视图。在计算机图像对齐和对应分析之后,对相似粒子的簇进行了平均。平均而言,在分子周围观察到不均匀的污渍分布,这可能是由于分子亲水部分的优先染色造成的。通过扫描透射电子显微镜测量确定整个分子的分子量为(1.6±0.2)·10 ^ 6道尔顿。

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