Department of Structural Biology, Max-Planck-Institute of Biophysics, Frankfurt 60438, Germany.
Institut für Pflanzengenetik, Leibniz Universität Hannover, Hannover 30419, Germany.
Plant Cell. 2021 Jul 19;33(6):2072-2091. doi: 10.1093/plcell/koab092.
Mitochondrial complex I is the main site for electron transfer to the respiratory chain and generates much of the proton gradient across the inner mitochondrial membrane. Complex I is composed of two arms, which form a conserved L-shape. We report the structures of the intact, 47-subunit mitochondrial complex I from Arabidopsis thaliana and the 51-subunit complex I from the green alga Polytomella sp., both at around 2.9 Å resolution. In both complexes, a heterotrimeric γ-carbonic anhydrase domain is attached to the membrane arm on the matrix side. Two states are resolved in A. thaliana complex I, with different angles between the two arms and different conformations of the ND1 (NADH dehydrogenase subunit 1) loop near the quinol binding site. The angle appears to depend on a bridge domain, which links the peripheral arm to the membrane arm and includes an unusual ferredoxin. We propose that the bridge domain participates in regulating the activity of plant complex I.
线粒体复合物 I 是电子向呼吸链转移的主要位点,产生了大部分跨线粒体内膜的质子梯度。复合物 I 由两个臂组成,形成一个保守的 L 形。我们报道了完整的、来自拟南芥的 47 个亚基线粒体复合物 I 和来自绿藻聚球藻的 51 个亚基复合物 I 的结构,分辨率均约为 2.9Å。在这两个复合物中,一个异三聚体γ-碳酸酐酶结构域附着在基质侧的膜臂上。在拟南芥复合物 I 中解析出了两种状态,两个臂之间的角度不同,醌结合位点附近的 ND1(NADH 脱氢酶亚基 1)环的构象也不同。这个角度似乎取决于一个桥接结构域,它将外周臂与膜臂连接起来,并包含一个不寻常的铁氧还蛋白。我们提出,桥接结构域参与调节植物复合物 I 的活性。