Interaction between mitochondria and the actin cytoskeleton in budding yeast requires two integral mitochondrial outer membrane proteins, Mmm1p and Mdm10p

被引:167
作者
Boldogh, I [1 ]
Vojtov, N [1 ]
Karmon, S [1 ]
Pon, LA [1 ]
机构
[1] Columbia Univ, Coll Phys & Surg, Dept Anat & Cell Biol, New York, NY 10032 USA
关键词
D O I
10.1083/jcb.141.6.1371
中图分类号
Q2 [细胞生物学];
学科分类号
071009 ; 090102 ;
摘要
Transfer of mitochondria to daughter cells during yeast cell division is essential for viable progeny. The actin cytoskeleton is required for this process, potentially as a track to direct mitochondrial movement into the bud. Sedimentation assays reveal two different components required for mitochondria-actin interactions: (I) mitochondrial actin binding protein(s) (mABP), a peripheral mitochondrial outer membrane protein(s) with ATP-sensitive actin binding activity, and (2) a salt-inextractable, presumably integral, membrane protein(s) required for docking of mABP on the organelle. mABP activity is abolished by treatment of mitochondria with high salt. Addition of either the salt-extracted mitochondrial peripheral membrane proteins (SE), or a protein fraction with ATP-sensitive actin-binding activity isolated from SE, to salt-washed mitochondria restores this activity. mABP docking activity is saturable, resistant to high salt, and inhibited by pretreatment of salt-washed mitochondria with papain. Two integral mitochondrial outer membrane proteins, Mmm1p (Burgess, S.M., M. Delannoy, and R.E. Jensen. 1994, J. Cell Biol. 126:1375-1391) and Mdm10p, (Sogo,,F,, and M.P. Yaffe. 1994. J. Cell Biol. 126:1361-1373) are required for these actin-mitochondria interactions. Mitochondria isolated from an mmm1-1 temperature-sensitive mutant or from an mmm10 deletion mutant show no mABP activity and no mABP docking activity. Consistent with this, mitochondrial motility in vivo in mmm1-1 and mdm10 Delta mutants appears to be actin independent. Depolymerization of F-actin using latrunculin-A results in loss of long-distance, linear movement and a fivefold decrease in the velocity of mitochondrial movement. Mitochondrial motility in mmm1-1 and mdm10 Delta mutants is indistinguishable from that in latrunculin-A-treated wild-type cells. We propose that Mmm1p and Mdm10p are required for docking of mABP on the surface of yeast mitochondria and coupling the organelle to the actin cytoskeleton.
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页码:1371 / 1381
页数:11
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共 35 条
  • [1] High rates of actin filament turnover in budding yeast and roles for actin in establishment and maintenance of cell polarity revealed using the actin inhibitor latrunculin-A
    Ayscough, KR
    Stryker, J
    Pokala, N
    Sanders, M
    Crews, P
    Drubin, DG
    [J]. JOURNAL OF CELL BIOLOGY, 1997, 137 (02) : 399 - 416
  • [2] BAKER D, 1989, METHOD CELL BIOL, V31, P127
  • [3] Mdm12p, a component required for mitochondrial inheritance that is conserved between budding and fission yeast
    Berger, KH
    Sogo, LF
    Yaffe, MP
    [J]. JOURNAL OF CELL BIOLOGY, 1997, 136 (03) : 545 - 553
  • [4] EVIDENCE OF MICROFILAMENT-ASSOCIATED MITOCHONDRIAL MOVEMENT
    BRADLEY, TJ
    SATIR, P
    [J]. JOURNAL OF SUPRAMOLECULAR STRUCTURE, 1979, 12 (02): : 165 - 175
  • [5] MMM1 ENCODES A MITOCHONDRIAL OUTER-MEMBRANE PROTEIN ESSENTIAL FOR ESTABLISHING AND MAINTAINING THE STRUCTURE OF YEAST MITOCHONDRIA
    BURGESS, SM
    DELANNOY, M
    JENSEN, RE
    [J]. JOURNAL OF CELL BIOLOGY, 1994, 126 (06) : 1375 - 1391
  • [6] BURKHARDT JK, 1993, J CELL SCI, V104, P151
  • [7] EFFECTS OF CYTOCHALASIN AND PHALLOIDIN ON ACTIN
    COOPER, JA
    [J]. JOURNAL OF CELL BIOLOGY, 1987, 105 (04) : 1473 - 1478
  • [8] DAUM G, 1982, J BIOL CHEM, V257, P3075
  • [9] ACTIN STRUCTURE AND FUNCTION - ROLES IN MITOCHONDRIAL ORGANIZATION AND MORPHOGENESIS IN BUDDING YEAST AND IDENTIFICATION OF THE PHALLOIDIN-BINDING SITE
    DRUBIN, DG
    JONES, HD
    WERTMAN, KF
    [J]. MOLECULAR BIOLOGY OF THE CELL, 1993, 4 (12) : 1277 - 1294
  • [10] Isolation of highly purified mitochondria from Saccharomyces cerevisiae
    Glick, BS
    Pon, LA
    [J]. MITOCHONDRIAL BIOGENESIS AND GENETICS, PT A, 1995, 260 : 213 - 223