A structure for the yeast prohibitin complex: Structure prediction and evidence from chemical crosslinking and mass spectrometry

被引:141
作者
Back, JW
Sanz, MA
De Jong, L
De Koning, LJ
Nijtmans, LGJ
De Koster, CG
Grivell, LA
Van der Spek, H
Muijsers, AO
机构
[1] Univ Amsterdam, SILS Mass Spectrometry Grp, NL-1018 WV Amsterdam, Netherlands
[2] Univ Amsterdam, SILS Mol Biol Grp, Amsterdam, Netherlands
[3] Univ Nijmegen, Med Ctr, Nijmegen Ctr Mitochondrial & Metab Disorders, Nijmegen, Netherlands
关键词
crosslinking; mass spectrometry; prohibitin complex; PHB complex; structure prediction;
D O I
10.1110/ps.0212602
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
The mitochondrial prohibitin complex consists of two subunits (PHB1 of 32 kD and PHB2 of 34 kD), assembled into a membrane-associated supercomplex of approximately 1 MD. A chaperone-like function in holding and assembling newly synthesized mitochondrial polypeptide chains has been proposed. To further elucidate the function of this complex, structural information is necessary. In this study we use chemical crosslinking, connecting lysine side chains, which are well scattered along the sequence. Crosslinked peptides from protease digested prohibitin complexes were identified with mass spectrometry. From these results, spatial restraints for possible protein conformation were obtained. Many interaction sites between PHB1 and PHB2 were found, whereas no homodimeric interactions were observed. Secondary and tertiary structural predictions were made using several algorithms and the models best fitting the spatial restraints were selected for further evaluation. From the structure predictions and the crosslink data we derived a structural building block of one PHB1 and one PHB2 subunit, strongly intertwined along most of their length. The size of the complex implies that approximately 14 of these building blocks are present. Each unit contains a putative transmembrane helix in PHB2. Taken together with the unit building block we postulate a circular palisade-like arrangement of the building blocks projecting into the intermembrane space.
引用
收藏
页码:2471 / 2478
页数:8
相关论文
共 22 条
[1]   A new crosslinker for mass spectrometric analysis of the quaternary structure of protein complexes [J].
Back, JW ;
Hartog, AF ;
Dekker, HL ;
Muijsers, AO ;
de Koning, LJ ;
de Jong, L .
JOURNAL OF THE AMERICAN SOCIETY FOR MASS SPECTROMETRY, 2001, 12 (02) :222-227
[2]  
Bennett KL, 2000, METH MOL B, V146, P113, DOI 10.1385/1-59259-045-4:113
[3]   Chemical cross-linking with thiol-cleavable reagents combined with differential mass spectrometric peptide mapping -: A novel approach to assess intermolecular protein contacts [J].
Bennett, KL ;
Kussmann, M ;
Björk, P ;
Godzwon, M ;
Mikkelsen, M ;
Sorensen, P ;
Roepstorff, P .
PROTEIN SCIENCE, 2000, 9 (08) :1503-1518
[4]   Prohibitin family members interact genetically with mitochondrial inheritance components in Saccharomyces cerevisiae [J].
Berger, KH ;
Yaffe, MP .
MOLECULAR AND CELLULAR BIOLOGY, 1998, 18 (07) :4043-4052
[5]   The prohibitin family of mitochondrial proteins regulate replicative lifespan [J].
Coates, PJ ;
Jamieson, DJ ;
Smart, K ;
Prescott, AR ;
Hall, PA .
CURRENT BIOLOGY, 1997, 7 (08) :607-610
[6]  
Cuff JA, 1999, PROTEINS, V34, P508, DOI 10.1002/(SICI)1097-0134(19990301)34:4<508::AID-PROT10>3.0.CO
[7]  
2-4
[8]  
Cuff JA, 2000, PROTEINS, V40, P502, DOI 10.1002/1097-0134(20000815)40:3<502::AID-PROT170>3.0.CO
[9]  
2-Q
[10]   Isolation of highly purified mitochondria from Saccharomyces cerevisiae [J].
Glick, BS ;
Pon, LA .
MITOCHONDRIAL BIOGENESIS AND GENETICS, PT A, 1995, 260 :213-223