Unraveling interactions of cell cycle-regulating proteins Sic1 and B-type cyclins in living yeast cells: a FLIM-FRET approach

被引:12
作者
Schreiber, Gabriele [1 ]
Barberis, Matteo [1 ]
Scolari, Silvia [1 ]
Klaus, Christine [1 ]
Herrmann, Andreas [1 ]
Klipp, Edda [1 ]
机构
[1] Humboldt Univ, Dept Biol, D-10115 Berlin, Germany
关键词
Saccharomyces cerevisiae; Forster resonance energy transfer; fluorescence lifetime imaging microscopy; Cdk1-Clb complexes; Cdk inhibitor; INFLUENZA-VIRUS HEMAGGLUTININ; KINASE INHIBITOR SIC1; S-PHASE; CDK INHIBITOR; DNA-REPLICATION; IN-VITRO; PHOSPHORYLATION; PROTEOLYSIS; DEGRADATION; TRANSITION;
D O I
10.1096/fj.11-192518
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
Sic1, cyclin-dependent kinase inhibitor of budding yeast, is synthesized in anaphase and largely degraded at the S-phase onset to regulate timing of DNA synthesis. Sic1 interacts with phase-specific B-type cyclin (Clb)-kinase (Cdk1) complexes, central regulators in cell cycle control. Its appearance is timed to mediate reduction in kinase activities at appropriate stages. Clbs are unstable proteins with extremely short half-lives. Interactions of Sic1 with Clbs have been detected both in vitro and in vivo by high-throughput genome-wide screenings. Furthermore, we have recently shown that Sic1 regulates waves of Clbs, acting as a timer in their appearance, thus controlling Cdk1-Clbs activation. The molecular mechanism is not yet fully understood but is hypothesized to occur via stoichiometric binding of Sic1 to Cdk1-Clb complexes. Using Forster resonance energy transfer (FRET) via fluorescence lifetime imaging microscopy (FLIM), we showed association of Sic1 to Clb cyclins in living yeast cells. This finding is consistent with the notion that inhibition of kinase activity can occur over the whole cell cycle progression despite variable Sic1 levels. Specifically, Sic1/Clb3 interaction was observed for the first time, and Sic1/Clb2 and Sic1/Clb5 pairs were confirmed, but no Sic1/Clb4 interaction was found, which suggests that, despite high functional homology between Clbs, only some of them can target Sic1 function in vivo.-Schreiber, G., Barberis, M., Scolari, S., Klaus, C., Herrmann, A., Klipp, E. Unraveling interactions of cell cycle-regulating proteins Sic1 and B-type cyclins in living yeast cells: a FLIM-FRET approach. FASEB J. 26, 546-554 (2012). www.fasebj.org
引用
收藏
页码:546 / 554
页数:9
相关论文
共 62 条
[1]   MECHANISMS THAT HELP THE YEAST-CELL CYCLE CLOCK TICK - G2 CYCLINS TRANSCRIPTIONALLY ACTIVATE G2 CYCLINS AND REPRESS G1 CYCLINS [J].
AMON, A ;
TYERS, M ;
FUTCHER, B ;
NASMYTH, K .
CELL, 1993, 74 (06) :993-1007
[2]   CLOSING THE CELL-CYCLE CIRCLE IN YEAST - G2 CYCLIN PROTEOLYSIS INITIATED AT MITOSIS PERSISTS UNTIL THE ACTIVATION OF G1 CYCLINS IN THE NEXT CYCLE [J].
AMON, A ;
IRNIGER, S ;
NASMYTH, K .
CELL, 1994, 77 (07) :1037-1050
[3]  
[Anonymous], 2006, PRINCIPLES FLUORESCE
[4]   Targeted proteomic study of the cyclin-Cdk module [J].
Archambault, V ;
Chang, EJ ;
Drapkin, BJ ;
Cross, FR ;
Chait, BT ;
Rout, MP .
MOLECULAR CELL, 2004, 14 (06) :699-711
[5]   SKP1 connects cell cycle regulators to the ubiquitin proteolysis machinery through a novel motif, the F-box [J].
Bai, C ;
Sen, P ;
Hofmann, K ;
Ma, L ;
Goebl, M ;
Harper, JW ;
Elledge, SJ .
CELL, 1996, 86 (02) :263-274
[6]  
Bailly E, 1999, MOL CELL BIOL, V19, P6872
[7]   CK2 regulates in vitro the activity of the yeast cyclin-dependent kinase inhibitor Sic1 [J].
Barberis, M ;
Pagano, MA ;
De Gioia, L ;
Marin, O ;
Vanoni, M ;
Pinna, LA ;
Alberghina, L .
BIOCHEMICAL AND BIOPHYSICAL RESEARCH COMMUNICATIONS, 2005, 336 (04) :1040-1048
[8]   The yeast cyclin-dependent kinase inhibitor Sic1 and mammalian p27Kip1 are functional homologues with a structurally conserved inhibitory domain [J].
Barberis, M ;
De Gioia, L ;
Ruzzene, M ;
Sarno, S ;
Coccetti, P ;
Fantucci, P ;
Vanoni, M ;
Alberghina, L .
BIOCHEMICAL JOURNAL, 2005, 387 :639-647
[9]  
Barberis M., 2012, ADV SYSTEMS BIOL ADV, V736
[10]   Sic1 plays a role in timing and oscillatory behaviour of B-type cyclins [J].
Barberis, Matteo ;
Linke, Christian ;
Adrover, Miquel A. ;
Gonzalez-Novo, Alberto ;
Lehrach, Hans ;
Krobitsch, Sylvia ;
Posas, Francesc ;
Klipp, Edda .
BIOTECHNOLOGY ADVANCES, 2012, 30 (01) :108-130