Yuan Ping, Jedd Gregory, Kumaran Desigan, Swaminathan Subramanyam, Shio Helen, Hewitt David, Chua Nam-Hai, Swaminathan Kunchithapadam
Institute of Molecular and Cell Biology, 30 Medical Drive, The National University of Singapore, Singapore, 117609.
Nat Struct Biol. 2003 Apr;10(4):264-70. doi: 10.1038/nsb910.
The Woronin body is a dense-core vesicle specific to filamentous ascomycetes (Euascomycetes), where it functions to seal the septal pore in response to cellular damage. The HEX-1 protein self-assembles to form this solid core of the vesicle. Here, we solve the crystal structure of HEX-1 at 1.8 A, which provides the structural basis of its self-assembly. The structure reveals the existence of three intermolecular interfaces that promote the formation of a three-dimensional protein lattice. Consistent with these data, self-assembly is disrupted by mutations in intermolecular contact residues and expression of an assembly-defective HEX-1 mutant results in the production of aberrant Woronin bodies, which possess a soluble noncrystalline core. This mutant also fails to complement a hex-1 deletion in Neurospora crassa, demonstrating that the HEX-1 protein lattice is required for Woronin body function. Although both the sequence and the tertiary structure of HEX-1 are similar to those of eukaryotic initiation factor 5A (eIF-5A), the amino acids required for HEX-1 self-assembly and peroxisomal targeting are absent in eIF-5A. Thus, we propose that a new function has evolved following duplication of an ancestral eIF-5A gene and that this may define an important step in fungal evolution.
沃罗宁体是丝状子囊菌(真子囊菌)特有的一种致密核心囊泡,其功能是在细胞受损时封闭隔膜孔。HEX-1蛋白自组装形成该囊泡的固体核心。在此,我们解析了HEX-1在1.8埃分辨率下的晶体结构,这为其自组装提供了结构基础。该结构揭示了促进三维蛋白质晶格形成的三个分子间界面的存在。与这些数据一致,分子间接触残基的突变会破坏自组装,表达组装缺陷型HEX-1突变体导致产生异常的沃罗宁体,其具有可溶性非晶态核心。该突变体也不能互补粗糙脉孢菌中的hex-1缺失,表明沃罗宁体功能需要HEX-1蛋白质晶格。尽管HEX-1的序列和三级结构与真核起始因子5A(eIF-5A)相似,但eIF-5A中不存在HEX-1自组装和过氧化物酶体靶向所需的氨基酸。因此,我们提出在祖先eIF-5A基因复制后进化出了一种新功能,这可能定义了真菌进化中的一个重要步骤。