Kerfeld C A, Anwar H P, Interrante R, Merchant S, Yeates T O
Molecular Biology Institute, University of California, Los Angeles 90024-1570, USA.
J Mol Biol. 1995 Jul 28;250(5):627-47. doi: 10.1006/jmbi.1995.0404.
The molecular structure of cytochrome c6 from the green alga Chlamydomonas reinhardtii has been determined from two crystal forms and refined to 1.9 A resolution. The two crystal forms are likely the result of different levels of post-translational modification of the protein. This is the first report of a high-resolution structure of a chloroplast-derived class I c-type cytochrome. The overall fold is similar to that of other class I c-type cytochromes, consisting of a series of alpha-helices and turns that envelop the heme prosthetic group. There is also a short two-stranded anti-parallel beta-sheet in the vicinity of the methionine axial ligand to the heme; this region of the molecule is formed by the most highly conserved residues in c6-type cytochromes. Although class I c-type cytochromes are assumed to function as monomers, both crystal forms of cytochrome c6 exhibit oligomerization about the heme crevice that is, in part, mediated by the short anti-parallel beta-sheet. The functional significance of this oligomerization is supported by the appearance of similar interfaces in other electron transfer couples, HPLC and light-scattering data, and is furthermore consistent with kinetic data on electron transfer reactions of c6-type cytochromes.
莱茵衣藻细胞色素c6的分子结构已通过两种晶体形式确定,并精修至1.9埃分辨率。这两种晶体形式可能是蛋白质翻译后修饰水平不同的结果。这是关于叶绿体来源的I类c型细胞色素高分辨率结构的首次报道。其整体折叠结构与其他I类c型细胞色素相似,由一系列包裹着血红素辅基的α螺旋和转角组成。在与血红素的甲硫氨酸轴向配体附近还有一个短的双链反平行β折叠;分子的这一区域由c6型细胞色素中最保守的残基形成。尽管I类c型细胞色素被认为以单体形式发挥作用,但细胞色素c6的两种晶体形式均在血红素裂隙周围表现出寡聚化,部分是由短的反平行β折叠介导的。其他电子传递偶联中类似界面的出现、高效液相色谱和光散射数据支持了这种寡聚化的功能意义,并且进一步与c6型细胞色素电子传递反应的动力学数据一致。