Structure of MFP2 and its function in enhancing MSP polymerization in Ascaris sperm amoeboid motility

被引:21
作者
Grant, RP
Buttery, SM
Ekman, GC
Roberts, TM
Stewart, M
机构
[1] MRC, Mol Biol Lab, Cambridge CB2 2QH, England
[2] Florida State Univ, Dept Biol Sci, Tallahassee, FL 32306 USA
关键词
amoeboid motility; polymerization; crystal structure; unique fold;
D O I
10.1016/j.jmb.2005.01.054
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 simplicity and specialization of the cell motility machinery of Ascaris sperm provides a powerful system in which to probe the basic molecular mechanism of amoeboid cell motility. Although Ascaris sperm locomotion closely resembles that seen in many other types of crawling cell, movement is generated by modulation of a cytoskeleton based on the major sperm protein (MSP) rather than the actin present in other cell types. The Ascaris motility machinery can be studied conveniently in a cell-free in vitro system based on the movement of plasma membrane vesicles by fibres constructed from bundles of MSP filaments. In addition to ATP, MSP and a plasma membrane protein, reconstitution of MSP motility in this cell-free extract requires cytosolic proteins to orchestrate the site-specific assembly and bundling of MSP filaments that generates locomotion. One of these proteins, MFP2, accelerates the rate of movement in this assay. Here, we describe crystal structures of two isoforms of MFP2 and show that both are constructed from two domains that have the same fold based on a novel, compact beta sheet arrangement. Patterns of conservation observed in a structure-based analysis of MFP2 sequences from different nematode species identified regions that may be putative functional interfaces involved both in interactions between MFP2 domains and also with other components of the sperm motility machinery. Analysis of the growth of fibres in vitro in the presence of added MFP2 indicated that MFP2 increases the rate of locomotion by enhancing the effective rate of MSP filament polymerization. This observation, together with the structural data, suggests that MFP2 may function in a manner analogous to formins in actin-based motility. (c) 2005 Elsevier Ltd. All rights reserved.
引用
收藏
页码:583 / 595
页数:13
相关论文
共 47 条
[1]   Gapped BLAST and PSI-BLAST: a new generation of protein database search programs [J].
Altschul, SF ;
Madden, TL ;
Schaffer, AA ;
Zhang, JH ;
Zhang, Z ;
Miller, W ;
Lipman, DJ .
NUCLEIC ACIDS RESEARCH, 1997, 25 (17) :3389-3402
[2]   THE CCP4 SUITE - PROGRAMS FOR PROTEIN CRYSTALLOGRAPHY [J].
BAILEY, S .
ACTA CRYSTALLOGRAPHICA SECTION D-BIOLOGICAL CRYSTALLOGRAPHY, 1994, 50 :760-763
[3]   2.6 Å resolution crystal structure of helices of the motile major sperm protein (MSP) of Caenorhabditis elegans [J].
Baker, AME ;
Roberts, TM ;
Stewart, M .
JOURNAL OF MOLECULAR BIOLOGY, 2002, 319 (02) :491-499
[4]   Actin machinery: pushing the envelope [J].
Borisy, GG ;
Svitkina, TM .
CURRENT OPINION IN CELL BIOLOGY, 2000, 12 (01) :104-112
[5]  
Bottino D, 2002, J CELL SCI, V115, P367
[6]  
Brunger AT, 1998, ACTA CRYSTALLOGR D, V54, P905, DOI 10.1107/s0907444998003254
[7]   Structural basis for amoeboid motility in nematode sperm [J].
Bullock, TL ;
McCoy, AJ ;
Kent, HM ;
Roberts, TM ;
Stewart, M .
NATURE STRUCTURAL BIOLOGY, 1998, 5 (03) :184-189
[8]   2.5 angstrom resolution crystal structure of the motile major sperm protein (MSP) of Ascaris suum [J].
Bullock, TL ;
Roberts, TM ;
Stewart, M .
JOURNAL OF MOLECULAR BIOLOGY, 1996, 263 (02) :284-296
[9]   Dissection of the Ascaris sperm motility machinery identifies key proteins involved in major sperm protein-based amoeboid locomotion [J].
Buttery, SM ;
Ekman, GC ;
Seavy, M ;
Stewart, M ;
Roberts, TM .
MOLECULAR BIOLOGY OF THE CELL, 2003, 14 (12) :5082-5088
[10]   Dendritic organization of actin comet tails [J].
Cameron, LA ;
Svitkina, TM ;
Vignjevic, D ;
Theriot, JA ;
Borisy, GG .
CURRENT BIOLOGY, 2001, 11 (02) :130-135