Mutant casein kinase I (Hrr25p/Kti14p) abrogates the G1 cell cycle arrest induced by Kluyveromyces lactis zymocin in budding yeast

被引:34
作者
Mehlgarten, C [1 ]
Schaffrath, R [1 ]
机构
[1] Univ Halle Wittenberg, Genet Inst, D-06120 Halle An Der Saale, Saale, Germany
关键词
killer yeast; zymocin; target of toxin (TOT); elongator; casein kinase;
D O I
10.1007/s00438-003-0807-5
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
Zymocin, a toxic protein complex produced by Kluyveromlvces lactis, inhibits cell cycle progression in Saccharomyces cerevisiae. In studying its action, a resistant mutant (kti14-1) was found to express the tot-phenotype typical of totDelta cells, toxin target (TOT) mutants that are impaired in RNA polymerase 11 Elongator function. Phenotypic analysis of a kti14-1 tot3Delta double mutant revealed a functional link between KTI14 and TOT/Elongator. Unlike totDelta cells, the kti14-1 mutant is sensitive to the drug methylmethane sulfonate (MMS), indicating that, besides being affected in TOT function, kti14-1 cells are also compromised in DNA repair. Single-copy complementation identified HRR25, which codes for casein kinase 1 (CKI), as KTI14. Kinase-minus hrr25 mutations (K38A and T1761) conferred zymocin resistance, while deletion of the other yeast CKI genes (YCK1-3) had no effect. A mutation in KTI14 that truncates the P/Q-rich C-terminus of Hrr25p also dissociates MMS sensitivity from zymocin resistance; this mutant is resistant to the toxin, but shows normal sensitivity to MMS. Thus, although kinase-minus mutations are sufficient to protect yeast cells from zymocin, toxicity is also dependent on the integrity of the C-terminal region of Hrr25p, which has been implicated in determining the substrate specificity or localization of Hrr25p.
引用
收藏
页码:188 / 196
页数:9
相关论文
共 42 条
[1]   A SUPPRESSOR OF A HIS4 TRANSCRIPTIONAL DEFECT ENCODES A PROTEIN WITH HOMOLOGY TO THE CATALYTIC SUBUNIT OF PROTEIN PHOSPHATASES [J].
ARNDT, KT ;
STYLES, CA ;
FINK, GR .
CELL, 1989, 56 (04) :527-537
[2]   2 SACCHAROMYCES-CEREVISIAE GENES WHICH CONTROL SENSITIVITY TO G(1) ARREST INDUCED BY KLUYVEROMYCES-LACTIS TOXIN [J].
BUTLER, AR ;
WHITE, JH ;
FOLAWIYO, Y ;
EDLIN, A ;
GARDINER, D ;
STARK, MJR .
MOLECULAR AND CELLULAR BIOLOGY, 1994, 14 (09) :6306-6316
[3]   KLUYVEROMYCES-LACTIS TOXIN HAS AN ESSENTIAL CHITINASE ACTIVITY [J].
BUTLER, AR ;
ODONNELL, RW ;
MARTIN, VJ ;
GOODAY, GW ;
STARK, MJR .
EUROPEAN JOURNAL OF BIOCHEMISTRY, 1991, 199 (02) :483-488
[4]   INTRACELLULAR EXPRESSION OF KLUYVEROMYCES-LACTIS TOXIN GAMMA-SUBUNIT MIMICS TREATMENT WITH EXOGENOUS TOXIN AND DISTINGUISHES 2 CLASSES OF TOXIN-RESISTANT MUTANT [J].
BUTLER, AR ;
PORTER, M ;
STARK, MJR .
YEAST, 1991, 7 (06) :617-625
[5]   ANALYSIS OF THE RESPONSE OF SACCHAROMYCES-CEREVISIAE CELLS TO KLUYVEROMYCES-LACTIS TOXIN [J].
BUTLER, AR ;
WHITE, JH ;
STARK, MJR .
JOURNAL OF GENERAL MICROBIOLOGY, 1991, 137 :1749-1757
[6]   Nutrients, via the Tor proteins, stimulate the association of Tap42 with type 2A phosphatases [J].
DiComo, CJ ;
Arndt, KT .
GENES & DEVELOPMENT, 1996, 10 (15) :1904-1916
[7]   Protein interactions within Saccharomyces cerevisiae Elongator, a complex essential for Kluyveromyces lactis zymocicity [J].
Fichtner, L ;
Frohloff, F ;
Jablonowski, D ;
Stark, MJR ;
Schaffrath, R .
MOLECULAR MICROBIOLOGY, 2002, 45 (03) :817-826
[8]   KTI11 and KTI13, Saccharomyces cerevisiae genes controlling sensitivity to G1 arrest induced by Kluyveromyces lactis zymocin [J].
Fichtner, L ;
Schaffrath, R .
MOLECULAR MICROBIOLOGY, 2002, 44 (03) :865-875
[9]   Molecular analysis of KTI12/TOT4, a Saccharomyces cerevisiae gene required for Kluyveromyces lactis zymocin action [J].
Fichtner, L ;
Frohloff, F ;
Bürkner, K ;
Larsen, M ;
Breunig, KD ;
Schaffrath, R .
MOLECULAR MICROBIOLOGY, 2002, 43 (03) :783-791
[10]   Saccharomyces cerevisiae Elongator mutations confer resistance to the Kluyveromyces lactis zymocin [J].
Frohloff, F ;
Fichtner, L ;
Jablonowski, D ;
Breunig, KD ;
Schaffrath, R .
EMBO JOURNAL, 2001, 20 (08) :1993-2003