The first α-helical domain of the vesicle-inducing protein in plastids 1 promotes oligomerization and lipid binding

被引:43
|
作者
Otters, Stephanie [1 ]
Braun, Paula [2 ]
Hubner, Johanna [1 ]
Wanner, Gerhardt [1 ]
Vothknecht, Ute C. [1 ,3 ]
Chigri, Fatima [3 ]
机构
[1] Ludwig Maximilians Univ Munchen, Dept Biol 1, D-82152 Munich, Germany
[2] Munich Univ Appl Sci, D-80335 Munich, Germany
[3] Ludwig Maximilians Univ Munchen, Dept Biol, Ctr Integrated Prot Sci Munich, D-82152 Munich, Germany
关键词
Lipid binding; Protein complex formation; PspA; Thylakoid biogenesis; Vipp1; PHAGE-SHOCK-PROTEIN; SECONDARY STRUCTURE PREDICTION; ESCHERICHIA-COLI; TRANSPORT-SYSTEM; STRESS-PROTEIN; PSPA; VIPP1; SYNECHOCYSTIS; PHOSPHOLIPIDS; ORGANIZATION;
D O I
10.1007/s00425-012-1772-1
中图分类号
Q94 [植物学];
学科分类号
071001 ;
摘要
The vesicle-inducing protein in plastids 1 (Vipp1) is an essential component for thylakoid biogenesis in cyanobacteria and chloroplasts. Vipp1 proteins share significant structural similarity with their evolutionary ancestor PspA (bacterial phage shock protein A), namely a predominantly alpha-helical structure, the formation of oligomeric high molecular weight complexes (HMW-Cs) and a tight association with membranes. Here, we elucidated domains of Vipp1 from Arabidopsis thaliana involved in homo-oligomerization as well as association with chloroplast inner envelope membranes. We could show that the 21 N-terminal amino acids of Vipp1, which form the first alpha-helix of the protein, are essential for assembly of the 2 MDa HMW-C but are not needed for formation of smaller subcomplexes. Interestingly, removal of this domain also interferes with association of the Vipp1 protein to the inner envelope. Fourier transform infrared spectroscopy of recombinant Vipp1 further indicates that Escherichia coli lipids bind tightly enough that they can be co-purified with the protein. This feature also depends on the presence of the first helix, which strongly supports an interaction of lipids with the Vipp1 HMW-C but not with smaller subcomplexes. Therefore, Vipp1 oligomerization appears to be a prerequisite for its membrane association. Our results further highlight structural differences between Vipp1 and PspA, which might be important in regard to their different function in thylakoid biogenesis and bacterial stress response, respectively.
引用
收藏
页码:529 / 540
页数:12
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